+

WO2005114998A1 - Dispositif et procede pour la transmission/reception de signal de diffusion numerique stereoscopique 3d par le biais de donnees video stereoscopiques 3d supplementaires - Google Patents

Dispositif et procede pour la transmission/reception de signal de diffusion numerique stereoscopique 3d par le biais de donnees video stereoscopiques 3d supplementaires Download PDF

Info

Publication number
WO2005114998A1
WO2005114998A1 PCT/KR2004/003129 KR2004003129W WO2005114998A1 WO 2005114998 A1 WO2005114998 A1 WO 2005114998A1 KR 2004003129 W KR2004003129 W KR 2004003129W WO 2005114998 A1 WO2005114998 A1 WO 2005114998A1
Authority
WO
WIPO (PCT)
Prior art keywords
video
additional data
information
stereoscopic
psi
Prior art date
Application number
PCT/KR2004/003129
Other languages
English (en)
Inventor
Suk-Hee Cho
Byung-Jun Bae
Kug-Jin Yun
Chung-Hyun Ahn
Soo-In Lee
Original Assignee
Electronics And Telecommunications Research Institute
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Electronics And Telecommunications Research Institute filed Critical Electronics And Telecommunications Research Institute
Priority to JP2007526966A priority Critical patent/JP4828535B2/ja
Priority to EP04808260A priority patent/EP1751979A4/fr
Publication of WO2005114998A1 publication Critical patent/WO2005114998A1/fr

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N19/00Methods or arrangements for coding, decoding, compressing or decompressing digital video signals
    • H04N19/50Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using predictive coding
    • H04N19/597Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using predictive coding specially adapted for multi-view video sequence encoding
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N7/00Television systems
    • H04N7/08Systems for the simultaneous or sequential transmission of more than one television signal, e.g. additional information signals, the signals occupying wholly or partially the same frequency band, e.g. by time division
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N13/00Stereoscopic video systems; Multi-view video systems; Details thereof
    • H04N13/10Processing, recording or transmission of stereoscopic or multi-view image signals
    • H04N13/106Processing image signals
    • H04N13/172Processing image signals image signals comprising non-image signal components, e.g. headers or format information
    • H04N13/178Metadata, e.g. disparity information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N13/00Stereoscopic video systems; Multi-view video systems; Details thereof
    • H04N13/10Processing, recording or transmission of stereoscopic or multi-view image signals
    • H04N13/194Transmission of image signals
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/20Servers specifically adapted for the distribution of content, e.g. VOD servers; Operations thereof
    • H04N21/23Processing of content or additional data; Elementary server operations; Server middleware
    • H04N21/235Processing of additional data, e.g. scrambling of additional data or processing content descriptors
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/20Servers specifically adapted for the distribution of content, e.g. VOD servers; Operations thereof
    • H04N21/23Processing of content or additional data; Elementary server operations; Server middleware
    • H04N21/236Assembling of a multiplex stream, e.g. transport stream, by combining a video stream with other content or additional data, e.g. inserting a URL [Uniform Resource Locator] into a video stream, multiplexing software data into a video stream; Remultiplexing of multiplex streams; Insertion of stuffing bits into the multiplex stream, e.g. to obtain a constant bit-rate; Assembling of a packetised elementary stream
    • H04N21/23614Multiplexing of additional data and video streams
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/20Servers specifically adapted for the distribution of content, e.g. VOD servers; Operations thereof
    • H04N21/23Processing of content or additional data; Elementary server operations; Server middleware
    • H04N21/236Assembling of a multiplex stream, e.g. transport stream, by combining a video stream with other content or additional data, e.g. inserting a URL [Uniform Resource Locator] into a video stream, multiplexing software data into a video stream; Remultiplexing of multiplex streams; Insertion of stuffing bits into the multiplex stream, e.g. to obtain a constant bit-rate; Assembling of a packetised elementary stream
    • H04N21/2365Multiplexing of several video streams
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/20Servers specifically adapted for the distribution of content, e.g. VOD servers; Operations thereof
    • H04N21/23Processing of content or additional data; Elementary server operations; Server middleware
    • H04N21/238Interfacing the downstream path of the transmission network, e.g. adapting the transmission rate of a video stream to network bandwidth; Processing of multiplex streams
    • H04N21/2389Multiplex stream processing, e.g. multiplex stream encrypting
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/43Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
    • H04N21/434Disassembling of a multiplex stream, e.g. demultiplexing audio and video streams, extraction of additional data from a video stream; Remultiplexing of multiplex streams; Extraction or processing of SI; Disassembling of packetised elementary stream
    • H04N21/4348Demultiplexing of additional data and video streams
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/43Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
    • H04N21/435Processing of additional data, e.g. decrypting of additional data, reconstructing software from modules extracted from the transport stream

Definitions

  • the present invention relates to an apparatus and method for transmitting/receiving a three-dimensional (3D) stereoscopic digital broadcast signal by using 3D stereoscopic video additional data; and, more particularly, to a 3D stereoscopic digital broadcast transmitting/ receiving apparatus and method that is compatible with a two- dimensional (2D) digital broadcasting system by defining and processing 3D stereoscopic video additional data as an additional stream added to a 2D video transport stream, which is different from a conventional method that provides a 3D stereoscopic digital broadcasting system by using a video of another viewpoint.
  • the 3D stereoscopic video additional data include a video of another viewpoint, disparity information and depth information.
  • a digital broadcasting using Moving Picture Experts Group (MPEG) technology can transmit high-definition programs in the same bandwidth of a conventional analog broadcasting and transmit a plurality of standard-definition programs in one channel.
  • the digital broadcasting can provide diverse application services, e.g., data broadcasting, interactive broadcasting and the like.
  • MPEG-2 transport streams (TSs) generated from service providers should be multiplexed into one channel.
  • PID packet identifier
  • Data required to generate a 3D stereoscopic video are a video of two viewpoints, a video of one viewpoint and disparity information, or a video of one viewpoint and depth information. Disclosure of Invention Technical Problem
  • an object of the present invention to provide an apparatus and method for transmitting/ receiving three-dimensional (3D) stereoscopic digital broadcast by using 3D stereoscopic video additional data.
  • the apparatus and method is compatible with a two-dimensional (2D) digital broadcast system by defining and processing the 3D stereoscopic video additional data, e.g., a video of another viewpoint, disparity information and/or depth information, as an additional stream synchronized with 2D video transport stream (TS) differently from conventional methods that support a 3D stereoscopic digital broadcasting system by using the video of another viewpoint.
  • a 3D stereoscopic digital broadcast transmitting apparatus using 3D stereoscopic video additional data including: a video acquiring unit for acquiring an original video and 3D stereoscopic video additional data; an audio data acquiring unit for acquiring audio data; an encoding unit for encoding the original video and 3D stereoscopic video additional data transmitted from the video acquiring unit and the audio data transmitted from the audio data acquiring unit; a program specific information (PSI) generating unit for generating PSI for discriminating each information; a packetizing unit for generating packetized elementary stream (PES) by receiving and packetizing elementary streams (ESs) obtained from the encoding in the encoding unit; a transport stream (TS) generating unit for generating transport streams by receiving the PES from the packetizing unit and the PSI from the PSI generating unit; a miltiplexing unit for rmltiplexing the transport streams transmitted from the TS generating unit into one transmission stream; and
  • PSI program specific information
  • a 3D stereoscopic digital broadcast receiving apparatus using 3D stereoscopic video additional data including: a demodulating unit for demodulating a modulated signal by receiving a modulated transport stream; a demultiplexing unit for demiltiplexing the demodulated transport stream by receiving the demodulated transport stream from the demodulating unit and program specific information from a PSI analyzing unit so as to produce transport streams; the PSI analyzing unit for analyzing PSI by receiving a transport stream (TS_PSI) for PSI from the demultiplexing unit and transmitting the analyzed PSI to the demiltiplexing unit; a TS analyzing unit for analyzing the transport streams by receiving the demiltiplexed transport streams from the demultiplexing unit so as to generate PES; a depacketizing unit for depacketizing the PES transmitted from the TS analyzing unit so as to generate elementary streams; a decoding unit for decoding the elementary streams transmitted from the
  • a method for transmitting a 3D stereoscopic digital broadcast by using 3D stereoscopic video additional data including the steps of: a) acquiring an original video, 3D stereoscopic video additional data and audio data; b) encoding the original video, the 3D stereoscopic video additional data and the audio data into a format appropriate for digital transmission to thereby generate elementary streams; c) generating packetized elementary stream by packetizing the elementary streams; d) generating program specific information for discriminating each information, such as the original video, the 3D stereoscopic video additional data, and the audio data; e) generating transport streams based on the packetized elementary streams and the program specific information; f) miltiplexing the transport streams into one transport stream; and g) modulating and transmitting the miltiplexed transport stream.
  • a method for receiving a 3D stereoscopic digital broadcast by using 3D stereoscopic video additional data including the steps of: a) demodulating a modulated signal by receiving a modulated transport stream; b) demultiplexing a transport stream (TS_PSI) for program specific information based on packet identifier (PID); c) analyzing the program specific information based on a transport stream (TS_PSI) for program specific information; d) demiltiplexing a transport stream into transport streams based on the analyzed program specific information; e) generating a packetized elementary stream by analyzing the demiltiplexed transport streams; f) generating elementary streams by depacketizing the PES; g) decoding the depacketized elementary streams; h) generating a 3D stereoscopic video by combining the decoded original video and the decoded 3D stereoscopic video additional data; and i) outputting
  • Fig. 1 is a block diagram illustrating a three-dimensional (3D) stereoscopic digital broadcast transmitting apparatus using 3D stereoscopic video additional data in accordance with an embodiment of the present invention
  • Fig. 2 is a syntax diagram of a packetized elementary stream (PES) in accordance with an embodiment of the present invention
  • Fig. 3 is a diagram describing a 3D stereoscopic video type (3D_video_type) added to discriminate 3D stereoscopic video additional data in accordance with the present invention
  • Fig. 3 is a diagram describing a 3D stereoscopic video type (3D_video_type) added to discriminate 3D stereoscopic video additional data in accordance with the present invention
  • Fig. 4 is a syntax diagram of a transport stream (TS) having Program Association Table (PAT) information in accordance with an embodiment of the present invention
  • Fig. 5 is a syntax diagram of a transport stream having Program Map Table (PMT) information in accordance with an embodiment of the present invention
  • PMT Program Map Table
  • Fig. 6 is a syntax diagram of a transport stream packet in accordance with an embodiment of the present invention
  • Fig. 7 is a block diagram showing a 3D stereoscopic digital broadcast receiving apparatus using 3D stereoscopic video additional data in accordance with an embodiment of the present invention
  • Fig. 7 is a block diagram showing a 3D stereoscopic digital broadcast receiving apparatus using 3D stereoscopic video additional data in accordance with an embodiment of the present invention
  • FIG. 8 is a flowchart describing a 3D stereoscopic digital broadcast transmitting method using 3D stereoscopic video additional data in accordance with an embodiment of the present invention.
  • Fig. 9 is a flowchart describing a 3D stereoscopic digital broadcast receiving method using 3D stereoscopic video additional data in accordance with an embodiment of the present invention. Best Mode for Carrying Out the Invention
  • Fig. 1 is a block diagram illustrating a three-dimensional (3D) stereoscopic digital broadcast transmitting apparatus using 3D stereoscopic video additional data in accordance with an embodiment of the present invention.
  • the 3D stereoscopic digital broadcast transmitting apparatus of the present invention includes a video acquiring unit 110, an audio acquiring unit 120, an encoding unit 130, a program specific information (PSI) generating unit 140, a packetizing unit 150, a transport stream (TS) generating unit 160, a miltiplexing unit 170 and a modulating unit 18Q
  • the video acquiring unit 110 acquires an original video and 3D stereoscopic video additional data.
  • the audio acquiring unit 120 acquires audio data.
  • the encoding unit 130 receives the original video and 3D stereoscopic video additional data from the video acquiring unit 110 and receives the audio data from the audio acquiring unit 120 and encodes them into a form appropriate for digital transmission.
  • the PSI generating unit 140 generates PSI for identifying data.
  • the packetizing unit 150 generates packetized elementary stream (PES) by receiving elementary streams (ES) obtained from the encoding in the encoding unit 130 and packetizing them.
  • the TS generating unit 160 generates transport streams by receiving PES from the packetizing unit 150 and receiving PSI from the PSI generating unit 14Q
  • the miltiplexing unit 170 receives transport streams from the TS generating unit 160 and miltiplexes them into one transport stream.
  • the modulating unit 180 modulates the transport stream multiplexed in the miltiplexing unit 170
  • the video acquiring unit 110 acquires a monocular video for generating an original video and one or more among a video of another viewpoint, disparity information, and depth information to generate 3D stereoscopic video additional data.
  • the video of one viewpoint for generating an original video, which is acquired through the video acquiring unit 110 is a reference video to be compared with a video of another viewpoint.
  • the video of another viewpoint which is acquired from the video acquiring unit 110 and used for the generation of the 3D stereoscopic video additional data, is a video having a viewpoint or a plurality of viewpoints which is/are different from the viewpoint of the original video.
  • the disparity information which is used to generate the 3D stereoscopic video additional data, is distance information between two locations where the same object is taken from different viewpoints, when the videos of milti- viewpoints or two videos each obtained from one viewpoint and from the other viewpoint are projected into one video.
  • the depth information is far-and-near information that can be figured out by acquiring a video of another viewpoint for the same object in a predetermined distance from the video of another viewpoint.
  • the encoding unit 130 includes a first Moving Picture Experts Group (MPEG)-2 encoder 131, an arbitrary encoder 132, which will be referred to as an X encoder, and a second MPEG-2 encoder 133.
  • the first MPEG-2 encoder 131 receives the original video of a reference viewpoint from the video acquiring unit 110 and encodes the original video based on the MPEG-2 which is the current broadcasting standard.
  • the X encoder 132 encodes the 3D stereoscopic video additional data transmitted from the video acquiring unit 110 efficiently.
  • the second MPEG-2 encoder 133 encodes the audio data transmitted from the audio acquiring unit 120 into a format of the MPEG-2, which is the current broadcasting standard.
  • the PSI generating unit 140 generates PSI for discriminating the original video, the 3D stereoscopic video additional data and the audio data.
  • the PSI generating unit 140 uses a stream type (streamjype) defined in the video and audio of the conventional digital broadcasting without change and newly defines a stream type (streamjype) for 3D stereoscopic video additional data as a value defined as 'reserved' or 'user private' in the PID information of a Program Map Table (PMT) for discriminating transport streams for the compatibility between the 2D digital broadcasting system and the 3D stereoscopic digital broadcasting system.
  • stream type streamjype
  • PMT Program Map Table
  • the packetizing unit 150 includes a first packetizer 151, a second packetizer 152 and a third packetizer 153.
  • the first packetizer 151 generates packetized elementary stream (PES_Ori) for the original video by packetizing an elementary stream (ES_Ori) for the original video, which is transmitted from the encoding unit 13Q
  • the second packetizer 152 generates PES (PES_3D) for 3D stereoscopic video additional data by packetizing an ES (ES_Ori) for the 3D stereoscopic video additional data, which is transmitted from the encoding unit 13Q
  • the third packetizer 153 generates PES (PES_Au) for audio data by packetizing an ES (ES_Au) for the audio data, which is transmitted from the encoding unit 13Q
  • the packetizing unit 150 fiirther performs a fiinction of additionally defining an input field for the type of 3D stereoscopic video additional data in a header of ES (ES_3D) for 3D stereoscopic video additional data to discriminate a video of another viewpoint, disparity information and depth information, when a new input field is needed in connection with the 3D stereoscopic video additional data.
  • ES_3D ES-3D
  • the TS generating unit 160 includes a first TS generator 161, a second TS generator 162, a third TS generator 163 and a fourth TS generator 164.
  • the first TS generator 161 generates a transport stream (TS_Ori) for the original image by receiving a PES (PES_Ori) for the original image from the packetizing unit 150.
  • PES PES_Ori
  • the second TS generator 162 generates a transport stream packet (TS_3D) for a 3D stereoscopic video additional data by receiving a PES (PES_3D) for the 3D stereoscopic video additional data from the packetizing unit 150
  • the third TS generator 163 generates a transport stream packet (TS_Au) for audio data by receiving a PES (PES_Au) for the audio data from the packetizing unit 150
  • the fourth TS generator 164 generates a transport stream packet (TS_PSI) for PSI by receiving a PSI from the PSI generating unit 14Q
  • the miltiplexing unit 170 adds Program Clock Reference (PCR) to a transport stream (TS_Ori) for the original video to use it for the detection of system time in the last process of miltiplexing.
  • PCR Program Clock Reference
  • TS_Ori transport stream
  • Fig. 2 is a syntax diagram of a packetized elementary stream in accordance with an embodiment of the present invention.
  • the PES generated in the packetizing unit 150 of Fig. 1 follows the structure of MPEG-2 system standard (International Organization for Standardization (ISO)/International Electrotechnical Committee (IEC) 13818-1) and it is defined in the header of a PES when there is a new input field required in connection with 3D stereoscopic video additional data.
  • ISO International Organization for Standardization
  • IEC International Electrotechnical Committee
  • an input field for the type of 3D stereoscopic video additional data is defined additionally to discriminate the 3D stereoscopic video additional data, e.g., video of another viewpoint, disparity information, and depth information.
  • FIG. 3 is a diagram describing an architecture for discriminating information of 3D stereoscopic video in the header of a PES in accordance with the present invention.
  • an information type for discriminating the kind of 3D stereoscopic video additional data is added by utilizing a PES extension field data space in the header of the conventional PES of Fig. 2, when a PES is generated in the packetizing unit 150 of Fig. 1.
  • a 2-bit 3D stereoscopic video additional data type (3D_video_type) can be defined additionally by using PES extension field data.
  • Table 1 presents the types of 3D stereoscopic video additional data.
  • a value indicating a 3D stereoscopic video additional data type should be defined in the PES extension field data in advance.
  • a value "00” signifies disparity information and a value “10” stands for a video of another viewpoint, while a value “11” denotes 'reserved.'
  • the PSI generating unit 140 generates PSI including four tables: Program Association Table (PAT), Program Map Table (PMT), Network Information Table (NIT) and Conditional Access Table (CAT).
  • the PSI is inserted to a payload of a TS packet and transmitted repeatedly within a predetermined time period for initialization in a receiver.
  • the above-mentioned tables are discriminated by different PID values and one TS packet carries only one kind of table.
  • Table 2 shows definitions for PID values of PSI. [47] Table 2 PID of PSI and description
  • a PID value of a section "0x00010 ⁇ OxlFFE" can be established arbitrarily and used, and the value and meaning of the established PID should be defined in the program map table in advance. Accordingly, the program map table establishes a PID of a transport stream and defines descriptions with respect to 3D stereoscopic video additional data additionally as well as establishing the PID of a transport stream used in the conventional digital broadcasting and defining description.
  • the PID "0x0000” denotes a Program Association Table (PAT); the PID “0x0001,” Conditional Access Table (CAT); the PID “0x0002,” a TS Description Table; the section “0x0003 ⁇ OxOOOF,” 'reserved'; the section “0x00010 ⁇ OxlFFE,” an arbitrary PID that can be established arbitrarily; and the PID "OxlFFF,” a null packet.
  • PAT Program Association Table
  • CAT Conditional Access Table
  • CAT Conditional Access Table
  • FIG. 4 is a syntax diagram of a TS having PAT information in accordance with an embodiment of the present invention.
  • the transport stream having PAT information follows the MPEG-2 System Standard (ISO/IEC 13818-1). It defines information on a program, e.g., a program number and a PID, which indicates what programs a transport stream is formed of in the PAT. That is, it includes a network ID (network_PID) for each program number (Program_number 0, 1, 2,..., i) and a PID (program_map_PID) for a Program Map Table.
  • network_PID network_PID
  • program_map_PID program_map_PID
  • 3D stereoscopic video additional data have one program number and has a PID (program_map_PID) for one program map table.
  • Fig. 5 is a syntax diagram of a TS having PMT information in accordance with an embodiment of the present invention.
  • the TS having PMT information follows a structure of the MPEG-2 System Standard (ISO/IEC 13818-1), and the PMT includes contents and PID for an elementary stream included in one program. That is, it includes a stream type (streamjype) of each information for a program, an elementary PID (elementary J°ID) of a transport stream, the length (ES nfo Jength) of elementary stream information, and a descriptor.
  • the original video, 3D stereoscopic video additional data and audio data are required.
  • the elementary PID (elementary J°ID) and the stream type (streamjype) for each information are included to discriminate each information.
  • the elementary PID denotes a PID value of a transport stream including program elements
  • the stream type denotes the kinds of program elements included in a packet having the PID value of the elementary PID.
  • Table 3 presents an allocation table of stream types standardized currently.
  • MPEG-2 video is defined as "0x02” and MPEG-2 audio is defined as "0x04" to discriminate a stream type (streamjype).
  • stream type for 3D stereoscopic video additional data
  • the 3D stereoscopic video additional data are defined as "0x02" just as 2D video, two video streams come to exist in one program and, thus, an error occurs in the conventional 2D digital receiver.
  • a 3D stereoscopic video additional data stream is defined newly with respect to one of the values defined as reserved or user private in the current standard.
  • Fig. 6 is a syntax diagram of a transport stream packet in accordance with an embodiment of the present invention.
  • packetized elementary streams PESs are generated in the form of a transport (TS) stream packet having a fixed length of 188 bytes and the PES is largely divided into two parts: a TS packet header and a TS packet payload.
  • the TS packet header includes a synchronization byte and a TS packet identifier (PID) which discriminates TS packets.
  • the TS packet payload includes packetized elementary stream for videos, i.e., PES JDri and PES_3D, PES for audio data (PES_Au) and PSI.
  • the packetized elementary streams (PES JDri, PES_3D, and PES_Au) are generated as TS packets based on the constitution of a transport stream of the MPEG-2 System Standard (ISO/IEC 13818-1) illustrated in Fig. 6. Therefore, the TS generating unit 160 of Fig. 1 receives packetized elementary stream (PES JDri) for the original video, packetized elementary stream (PES_3D) for 3D stereoscopic video additional data, and packetized elementary stream (PES_Au) for audio data and generates TS packets by referring to PID values defined in the program map table.
  • PID values defined in the program map table
  • Each TS packet is multiplexed into a single transport stream in the miltiplexing unit 170 of Fig. 1 and modulated into a transmittable form in the modulating unit 18Q
  • PCR program clock reference
  • TS JDri transport stream
  • Fig. 7 is a 3D stereoscopic digital broadcast receiving apparatus using 3D stereoscopic video additional data in accordance with an embodiment of the present invention.
  • the 3D stereoscopic digital broadcast receiving apparatus using 3D stereoscopic video additional data includes a demodulating unit 710, a demiltiplexing unit 720, a PSI analyzing unit 730, a TS analyzing unit 740, a depacketizing unit 750, a decoding unit 760, a video combining unit 770, and an outputting unit 78Q [68]
  • the demodulating unit 710 receives a modulated transport stream and demodulates the modulated signal.
  • the demiltiplexing unit 720 receives the demodulated transport stream from the demodulating unit 710 and PSI from the PSI analyzing unit and de- miltiplexes the one miltiplexed transport stream to thereby divide it into transport streams.
  • the PSI analyzing unit 730 receives a transport stream (TS J°SI) for program specific information from the demultiplexing unit 720, analyzes program specific information, and transmits the analyzed result to the demiltiplexing unit 720
  • the TS analyzing unit 740 receives demiltiplexed transport streams from the demultiplexing unit 720, analyzes the transport streams and generates packetized elementary stream.
  • the depacketizing unit 750 receives the packetized elementary streams from the TS analyzing unit 740 and depacketizes them to thereby generate elementary streams.
  • the decoding unit 760 receives the elementary streams from the depacketizing unit 750 and decodes the elementary streams.
  • the video combining unit 770 receives and combines the original video and the 3D stereoscopic video additional data which are decoded in the decoding unit 760 to thereby generate a 3D stereoscopic video.
  • the outputting unit 780 receives a 2D video or 3D stereoscopic video from the video combining unit 770, outputs it based on a display type selected by the user and receives audio data from the decoding unit 760 and outputs the audio data.
  • the demiltiplexing unit 720 receives a demodulated TS from the demodulating unit 710, first separates a transport stream (TS J°SI) for program specific information, and transmits it to the PSI analyzing unit 730; and receives program specific information that can discriminate each information, e.g., PID information, from the PSI analyzing unit 730 and demiltiplexes it into a transport stream (TS JDri) for the original video, a transport stream (TS_3D) for 3D stereoscopic video additional data, and a transport stream (TS_Au) for audio data.
  • TS JDri transport stream
  • TS_3D transport stream
  • TS_Au transport stream
  • the demultiplexing unit 720 receives miltiplexed transport stream, finds a TS packet having PAT information whose PID value in the header of the transport stream is "0x0000" and transmits the TS packet to the PSI analyzing unit 73Q Subsequently, it receives a program number and a program map PID (program nap J°ID) from the PSI analyzing unit 730, finds out a TS packet having PMT information from the TS, and transmits it to the PSI analyzing unit 73Q Then, the demiltiplexing unit 720 receives a stream type (streamjype) of each elementary stream and elementary PID (elementary J°ID) from the PSI analyzing unit 730 and demiltiplexes them into TS for each data (TS JDri, TS_3D or TS_Au).
  • a stream type streamjype
  • elementary PID elementary J°ID
  • the demultiplexing unit 720 recognizes the 3D stereoscopic video additional data as 'reserved' or 'user private' and only the streams for video and audio are processed. Therefore, it is compatible with the conventional 2D digital broadcasting system and, in case of the 3D stereoscopic digital broadcasting system, it recognizes a newly defined stream type (streamjype) and processes video, audio and 3D stereoscopic video additional data.
  • the demiltiplexing unit 720 restores system clocks based on the PCR of the transport stream (TS JDri) for the original video for the clock synchronization of the transmitter of Fig. 1 and the receiver of Fig. 7.
  • the PSI analyzing unit 730 receives transport stream (TS J°SI) for program specific information from the demultiplexing unit 730, analyzes PAT information and PID information of the PMT, and then outputs PSI for discriminating TSs in the demiltiplexing unit 720 to the demiltiplexing unit 720
  • the PSI analyzing unit receives a TS packet having PAT information from the demultiplexing unit 720, analyzes payload information of the TS packet, and transmits the analyzed result to the demiltiplexing unit 720 Then, it receives a TS packet having PMT information from the demultiplexing unit 720, analyzes payload information of the TS packet, and transmits the analyzed result to the demiltiplexing unit 720
  • the TS analyzing unit 740 includes a first TS analyzer 741, a second TS analyzer 742, and a third TS analyzer 743.
  • the first TS analyzer 741 generates packetized elementary stream (PES JDri) for the original video by receiving a transport stream (TS JDri) for the original video from the demultiplexing unit 720 and analyzing it.
  • the second TS analyzer 742 generates packetized elementary stream (PES_3D) for the 3D stereoscopic video additional data by receiving a transport stream (TS_3D) for the 3D stereoscopic video additional data from the demultiplexing unit 720 and analyzing it.
  • the third TS analyzer 743 generates packetized elementary stream (PES_Au) for audio data by receiving a transport stream (TS_Au) for the audio data from the demultiplexing unit 720 and analyzing it.
  • the depacketizing unit 750 includes a first depacketizer 751, a second depacketizer 752, and a third depacketizer 753.
  • the first depacketizer 751 generates an elementary stream (ES JDri) for the original video by receiving a packetized elementary stream (PES JDri) for the original video from the TS analyzing unit 740 and depacketizing it.
  • the second depacketizer 752 generates an elementary stream (ES_3D) for 3D stereoscopic video additional data by receiving a packetized elementary stream (PES_3D) for the 3D stereoscopic video additional data from the TS analyzing unit 740 and depacketizing it.
  • the third depacketizer 753 generates an elementary stream (ES_Au) for audio data by receiving a packetized elementary stream (PES_Au) for the audio data from the TS analyzing unit 740 and depacketizing it.
  • the second packetizer 752 of the depacketizing unit 750 fiirther performs a fiinction of discriminating each information by analyzing information on the 3D stereoscopic video additional data type, such as a video of another viewpoint, disparity information and depth information, in the header of the packetized elementary stream (PES_3D) for the 3D stereoscopic video additional data.
  • the 3D stereoscopic video additional data type such as a video of another viewpoint, disparity information and depth information
  • the decoding unit 760 includes a first MPEG-2 decoder 761, an arbitrary decoder 762, and a third MPEG-2 decoder 763.
  • the first MPEG-2 decoder 761 receives an elementary stream (ES JDri) for the original video from the depacketizing unit 750 and decodes it into the format of MPEG-2, which is the current broadcasting standard.
  • the arbitrary decoder 762 receives an elementary stream (ES_3D) for 3D stereoscopic video additional data from the depacketizing unit 750 and decodes it efficiently.
  • the third MPEG-2 decoder 763 receives an elementary stream (ES_Au) for audio data from the depacketizing unit750 and decodes it into the format of MPEG-2, which is the current broadcasting standard.
  • the decoding unit 760 performs synchronization based on a PCR to synchronize the decoded elementary stream (ES JDri) for the original video, the decoded elementary stream (ES_3D) for the 3D stereoscopic video additional data, and the decoded elementary stream (ES_Au) for the audio data which are transmitted from the depacketizing unit 750
  • the video combining unit 770 generates a 3D stereoscopic video by receiving the original video and 3D stereoscopic video additional data that are decoded in the decoding unit 760 and performing synchronization. Then, it outputs a 2D video of the original video for 2D display and a 3D stereoscopic video for 3D display to the video display unit 781.
  • the video combining unit 770 synchronizes the original video and the 3D stereoscopic video additional data for generating a 3D stereoscopic video based on the PCR, which is a system clock, and Presentation Time Stamp (PTS) in a PES.
  • PCR which is a system clock, and Presentation Time Stamp (PTS) in a PES.
  • the original video of the 2D video is a video of one viewpoint which becomes a reference to be compared with a video of another viewpoint.
  • the 3D stereoscopic video additional data of the 3D stereoscopic video includes a video of another viewpoint which is different from the viewpoint of the original video or it includes a video of multi- viewpoints which has a plurality of viewpoints, and/or disparity information or depth information.
  • the video combining unit 770 generates a 3D stereoscopic video by applying an appropriate 3D stereoscopic video generating algorithm according to the type of the 3D stereoscopic video additional data, i.e., a video of another viewpoint, disparity information and/or depth information.
  • the outputting unit 780 includes a video displayer 781 for displaying a 2D video or a 3D stereoscopic video that are inputted from the video combining unit 770 and an audio data player 782 for outputting audio data inputted from the decoding unit 760.
  • the outputting unit 780 outputs different information according to the display type selected by the user. If the user selects a 2D display type, it outputs a 2D video through the video displayer 781. If the user selects a 3D display type, it outputs a 3D stereoscopic video through the video displayer 781.
  • FIG. 8 is a flowchart describing a 3D stereoscopic digital broadcast transmitting method using 3D stereoscopic video additional data in accordance with an embodiment of the present invention.
  • step S810 the original video and 3D stereoscopic video additional data are acquired in the video acquiring unit 110 and, at step S820, audio data are acquired in the audio acquiring unit 120
  • step S840 elementary streams are generated in the encoding unit 130 by encoding the original video and the 3D stereoscopic video additional data acquired in the video acquiring unit 110 and the audio data acquired in the audio acquiring unit 120
  • the acquired original video and the 3D stereoscopic video additional data are discriminated.
  • the original video are encoded by using an MPEG-2 encoder, which is a current broadcasting standard and, at step S842, the 3D stereoscopic video additional data are encoded by using an arbitrary encoder for efficient encoding to thereby generate transport streams.
  • the audio data acquired in the audio acquiring unit 120 are encoded by using the MPEG-2, which is the current broadcasting standard, to thereby generate elementary streams for the audio data.
  • step S850 program specific information is generated in the PIS generating unit 140, to discriminate the original video, 3D stereoscopic video additional data, and audio data.
  • step S860 packetized elementary streams are generated in the packetizing unit 150 by packetizing the elementary streams generated from the encoding process.
  • transport streams are generated in the TS generating unit 160 based on the above-generated program specific information and the above- generated packetized elementary streams.
  • step S880 the above-generated transport streams are multiplexed into one transport stream in the miltiplexing unit 170
  • the miltiplexed transport stream is modulated in the modulating unit 180 and transmitted.
  • FIG. 9 is a flowchart describing a 3D stereoscopic digital broadcast receiving method using 3D stereoscopic video additional data in accordance with an embodiment of the present invention.
  • step S 10 the modulated transport stream is received and demodulated in the demodulating unit 71Q
  • the transport stream (TS J°SI) for program specific information is demiltiplexed in the demiltiplexing unit 720 based on PID.
  • the PSI analyzing unit 730 analyzes program specific information based on the transport stream (TS J°SI) for program specific information.
  • the demiltiplexing unit 720 discriminates the transport streams based on the above analyzed program specific information and demiltiplexes them into transport streams.
  • the TS analyzing unit 740 analyzes the transport streams to thereby generate packetized elementary stream.
  • the depacketizing unit 750 depacketizes the above generated packetized elementary streams and generates elementary streams.
  • step S970 the decoding unit 760 decodes the depacketized elementary streams.
  • the first MPEG-2 decoder 761 decodes the elementary stream (ES JDri) for the original video into MPEG-2, which is the current broadcasting standard and, at step S972, the arbitrary decoder 762 decodes the ES for the 3D stereoscopic video additional data efficiently.
  • the second MPEG-2 decoder 761 decodes the elementary stream (ES_Au) for audio data into MPEG-2, which is the current broadcasting standard.
  • step S980 if a video display mode is inputted from the user and 3D is selected, the video combining unit 770 generates 3D stereoscopic video additional data by combining the decoded original video and the 3D stereoscopic video additional data. Otherwise, if 2D is selected, it bypasses original video.
  • the outputting unit 780 outputs a 2D video or 3D video according to the selection of the user along with audio data.
  • the method of the present invention can be embodied as a program and stored in a computer-readable recording medium such as CD-ROM, RAM, ROM, floppy disks, hard disks, magnetooptical disks and the like. Since the process can be easily implemented by those of ordinary skill in the art, it will not be described any firther herein.
  • the present invention can secure compatibility with a 2D digital broadcasting system by defining and processing the 3D stereoscopic video additional data, such as a video of another viewpoint, disparity information or depth information as a transport stream synchronized with a 2D transport stream, which is different from the conventional method that supports only a 3D digital broadcasting system using a video of another viewpoint.
  • the 3D stereoscopic digital broadcast receiver of the present invention can be embodied in a simple manner.

Landscapes

  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Library & Information Science (AREA)
  • Testing, Inspecting, Measuring Of Stereoscopic Televisions And Televisions (AREA)
  • Two-Way Televisions, Distribution Of Moving Picture Or The Like (AREA)
  • Compression Or Coding Systems Of Tv Signals (AREA)

Abstract

L'invention concerne un dispositif pour la transmission/réception de signal de diffusion numérique stéréoscopique 3D et un procédé correspondant, reposant sur l'utilisation de données vidéo stéréoscopiques 3D supplémentaires, en compatibilité avec un système de diffusion numérique 2D. On définit et on traite les données supplémentaires en question, du type autre vidéo 3D, information de disparité, information de profondeur, comme un flux supplémentaire ajouté à un flux de transport vidéo 2D, ce qui diffère du procédé classique établissant un système de diffusion numérique stéréoscopique 3D par recours à la vidéo selon un autre point de vue. Le dispositif comprend : unité d'acquisition vidéo, unité d'acquisition audio, unité de codage, unité de production d'information spécifique de programme, unité de mise en paquets, unité de production de flux de transport, unité de multiplexage et unité de modulation.
PCT/KR2004/003129 2004-05-21 2004-11-30 Dispositif et procede pour la transmission/reception de signal de diffusion numerique stereoscopique 3d par le biais de donnees video stereoscopiques 3d supplementaires WO2005114998A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
JP2007526966A JP4828535B2 (ja) 2004-05-21 2004-11-30 3次元立体ビデオ付加データを用いた3次元立体デジタル放送の送/受信装置及びその方法
EP04808260A EP1751979A4 (fr) 2004-05-21 2004-11-30 Dispositif et procede pour la transmission/reception de signal de diffusion numerique stereoscopique 3d par le biais de donnees video stereoscopiques 3d supplementaires

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
KR10-2004-0036566 2004-05-21
KR1020040036566A KR100585966B1 (ko) 2004-05-21 2004-05-21 3차원 입체 영상 부가 데이터를 이용한 3차원 입체 디지털방송 송/수신 장치 및 그 방법

Publications (1)

Publication Number Publication Date
WO2005114998A1 true WO2005114998A1 (fr) 2005-12-01

Family

ID=35428685

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/KR2004/003129 WO2005114998A1 (fr) 2004-05-21 2004-11-30 Dispositif et procede pour la transmission/reception de signal de diffusion numerique stereoscopique 3d par le biais de donnees video stereoscopiques 3d supplementaires

Country Status (5)

Country Link
EP (1) EP1751979A4 (fr)
JP (1) JP4828535B2 (fr)
KR (1) KR100585966B1 (fr)
CN (1) CN100563324C (fr)
WO (1) WO2005114998A1 (fr)

Cited By (49)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2008069613A1 (fr) 2006-12-08 2008-06-12 Electronics And Telecommunications Research Institute Système de transmission/ réception d'une diffusion réaliste numérique fondé sur un différé et procédé d'application associé
WO2008142180A1 (fr) * 2007-05-18 2008-11-27 Neotecno Desarrollos, S.L. Procédé de télévision numérique en trois dimensions
EP1955554A4 (fr) * 2005-12-02 2009-12-23 Korea Electronics Telecomm Procede de fourniture de service de contenus 3d base sur la diffusion numerique
EP2073560A4 (fr) * 2006-09-29 2009-12-30 Korea Electronics Telecomm Procédé et appareil pour fournir un service d'images fixes tridimensionnelles sur la diffusion numérique
JP2010508752A (ja) * 2006-11-01 2010-03-18 韓國電子通信研究院 立体映像コンテンツ再生に利用されるメタデータの復号化方法及び装置
US20100118119A1 (en) * 2006-10-11 2010-05-13 Koninklijke Philips Electronics N.V. Creating three dimensional graphics data
US20110010739A1 (en) * 2009-07-07 2011-01-13 Electronics And Telecommunications Research Institute Method and apparatus for transmitting/receiving stereoscopic video in digital broadcasting system
WO2011059290A2 (fr) 2009-11-13 2011-05-19 Samsung Electronics Co., Ltd. Procédé et appareil pour générer un flux multimédia destiné à l'adaptation de la profondeur d'informations de reproduction vidéo additionnelles tridimensionnelles, et procédé et appareil pour recevoir un flux multimédia destiné à l'adaptation de la profondeur d'informations de reproduction vidéo additionnelles tridimensionnelles
EP2334088A1 (fr) * 2009-12-14 2011-06-15 Koninklijke Philips Electronics N.V. Génération d'un signal vidéo 3D
US20110181693A1 (en) * 2010-01-28 2011-07-28 Samsung Electronics Co., Ltd. Method and apparatus for generating data stream for providing 3-dimensional multimedia service, and method and apparatus for receiving the data stream
US20110200303A1 (en) * 2010-02-12 2011-08-18 Telefonica, S.A. Method of Video Playback
WO2010087574A3 (fr) * 2009-01-28 2011-10-06 Lg Electronics Inc. Récepteur de diffusion et procédé de traitement de données vidéo correspondant
WO2010079893A3 (fr) * 2009-01-06 2011-10-06 Lg Electronics Inc. Procédé de traitement d'un signal vidéo tridimensionnel (3d) et récepteur de diffusion numérique correspondant
US20110261158A1 (en) * 2008-12-30 2011-10-27 Lg Electronics Inc. Digital broadcast receiving method providing two-dimensional image and 3d image integration service, and digital broadcast receiving device using the same
EP2384012A1 (fr) * 2010-04-30 2011-11-02 LG Electronics Inc. Appareil de traitement de flux video 3D et procédé de traitement associé
WO2010107174A3 (fr) * 2009-03-19 2011-11-17 Lg Electronics Inc. Procédé de traitement d'un signal vidéo en trois dimensions (3d) et récepteur numérique multidiffusion conçu pour mettre en oeuvre le procédé de traitement
WO2011129602A3 (fr) * 2010-04-14 2012-01-12 삼성전자 주식회사 Procédé et dispositif de codage de données d'image en trois dimensions et procédé et dispositif de décodage de données d'image en trois dimensions
US20120033035A1 (en) * 2010-05-07 2012-02-09 Electronics And Telecommunications Research Institute Method and system for transmitting/receiving 3-dimensional broadcasting service
EP2255539A4 (fr) * 2008-03-25 2012-03-14 Samsung Electronics Co Ltd Procédé et appareil pour fournir et reproduire un contenu vidéo tridimensionnel et support d'enregistrement correspondant
US20120069146A1 (en) * 2010-09-19 2012-03-22 Lg Electronics Inc. Method and apparatus for processing a broadcast signal for 3d broadcast service
US20120092453A1 (en) * 2009-06-16 2012-04-19 Jong Yeul Suh Broadcast transmitter, broadcast receiver and 3d video processing method thereof
EP2442577A3 (fr) * 2010-10-15 2012-05-16 Sony Corporation Appareil de traitement d'informations, procédé et programme de traitement d'informations
US8289998B2 (en) 2009-02-13 2012-10-16 Samsung Electronics Co., Ltd. Method and apparatus for generating three (3)-dimensional image data stream, and method and apparatus for receiving three (3)-dimensional image data stream
US8358301B2 (en) 2006-10-30 2013-01-22 Koninklijke Philips Electronics N.V. Video depth map alignment
EP2337368A4 (fr) * 2009-08-18 2013-06-12 Sony Corp Dispositif de reproduction, procédé de reproduction, structure de données, support d'enregistrement, dispositif d'enregistrement, procédé d'enregistrement et programme
WO2013149655A1 (fr) * 2012-04-04 2013-10-10 Naxos Finance Sa Système pour générer et recevoir un flux vidéo stéréoscopique rétrocompatible 2d, et procédé associé
US20130278720A1 (en) * 2008-12-18 2013-10-24 Jong-Yeul Suh Digital broadcasting reception method capable of displaying stereoscopic image, and digital broadcasting reception apparatus using same
EP2547101A4 (fr) * 2010-04-14 2013-12-18 Samsung Electronics Co Ltd Procédé et appareil pour générer un flux binaire de diffusion pour une diffusion numérique avec des sous-titres, et procédé et appareil pour recevoir un flux binaire de diffusion pour une diffusion numérique avec des sous-titres
EP2200331A3 (fr) * 2008-12-19 2014-01-01 Electronics and Telecommunications Research Institute Diffusion de vidéo 3D/stéréoscopique avec transmission en temps différé d'un flux de données vidéo 3D auxiliaire
RU2510588C2 (ru) * 2009-09-16 2014-03-27 Сони Корпорейшн Устройство приема, способ приема и устройство передачи
EP2582142A4 (fr) * 2010-06-09 2014-04-02 Samsung Electronics Co Ltd Procédé pour fournir un service de transmission multimédia en continu à base de fragments et dispositif associé, et procédé pour recevoir un service de transmission multimédia en continu à base de fragments et dispositif associé
RU2518408C2 (ru) * 2007-09-24 2014-06-10 Конинклейке Филипс Электроникс Н.В. Способ и система для кодирования сигнала видео данных, кодированный сигнал видео данных, способ и система для декодирования сигнала видео данных
EP2360930A4 (fr) * 2008-12-18 2015-03-25 Lg Electronics Inc Procédé pour le traitement de signal d'image en trois dimensions et écran d'affichage d'image pour la mise en uvre du procédé
US9025941B2 (en) 2011-02-10 2015-05-05 Panasonic intellectual property Management co., Ltd Data creation device and playback device for video picture in video stream
US9055280B2 (en) 2010-01-28 2015-06-09 Samsung Electronics Co., Ltd. Method and apparatus for transmitting digital broadcasting stream using linking information about multi-view video stream, and method and apparatus for receiving the same
US9060165B2 (en) 2008-09-02 2015-06-16 Huawei Device Co., Ltd. 3D video communication method, sending device and system, image reconstruction method and system
US9131203B2 (en) 2009-09-30 2015-09-08 Sharp Kabushiki Kaisha Information recording medium, reproduction method and recording method using information recording medium, information recording/reproduction device, and 3D conversion unit and information recording device
US9137515B2 (en) 2010-06-18 2015-09-15 Samsung Electronics Co., Ltd. Method and apparatus for providing digital broadcasting service with 3-dimensional subtitle
EP2471270A4 (fr) * 2009-10-20 2015-09-16 Samsung Electronics Co Ltd Procédé et appareil de génération d'un flux, procédé et appareil de traitement d'un flux
US9185383B2 (en) 2010-01-07 2015-11-10 Thomson Licensing System and method for providing optimal display of video content
US9307002B2 (en) 2011-06-24 2016-04-05 Thomson Licensing Method and device for delivering 3D content
US9392256B2 (en) 2009-07-27 2016-07-12 Samsung Electronics Co., Ltd. Method and apparatus for generating 3-dimensional image datastream including additional information for reproducing 3-dimensional image, and method and apparatus for receiving the 3-dimensional image datastream
US9432651B2 (en) 2008-07-24 2016-08-30 Koninklijke Philips N.V. Versatile 3-D picture format
US9495791B2 (en) 2011-10-05 2016-11-15 Bitanimate, Inc. Resolution enhanced 3D rendering systems and methods
US9521396B2 (en) 2007-11-29 2016-12-13 Mitsubishi Electric Corporation Stereoscopic video recording method, stereoscopic video recording medium, stereoscopic video reproducing method, stereoscopic video recording apparatus, and stereoscopic video reproducing apparatus
US9628780B2 (en) 2010-12-08 2017-04-18 Lg Electronics Inc. Device and method for receiving digital broadcast signal
US9693033B2 (en) 2011-11-11 2017-06-27 Saturn Licensing Llc Transmitting apparatus, transmitting method, receiving apparatus and receiving method for transmission and reception of image data for stereoscopic display using multiview configuration and container with predetermined format
US9723287B2 (en) 2012-07-09 2017-08-01 Lg Electronics Inc. Enhanced 3D audio/video processing apparatus and method
CN107787585A (zh) * 2015-06-17 2018-03-09 韩国电子通信研究院 用于处理立体视频数据的mmt装置和mmt方法

Families Citing this family (67)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100697972B1 (ko) * 2004-11-16 2007-03-23 한국전자통신연구원 입체 방송 서비스를 위한 디지털 방송 송신 장치 및 그 방법
KR100656783B1 (ko) * 2004-12-14 2006-12-12 한국전자통신연구원 양안식 입체 영상 전송 장치 및 그 방법과 그를 이용한양안식 입체 영상 렌더링 장치 및 그 방법
KR100747598B1 (ko) * 2005-12-09 2007-08-08 한국전자통신연구원 디지털방송 기반의 3차원 입체영상 송수신 시스템 및 그방법
KR100783722B1 (ko) * 2005-12-20 2007-12-07 한국철도기술연구원 다양한 수신환경을 고려한 스테레오 비디오 부호화방법 및 장치
KR101177412B1 (ko) 2006-04-20 2012-08-24 엘지전자 주식회사 방송 신호 송수신 장치 및 이를 이용한 방송 신호 송수신방법
KR100813064B1 (ko) * 2006-05-19 2008-03-14 엘지전자 주식회사 비디오 영상 복호화/부호화 방법 및 장치, 데이터 포맷
KR100763753B1 (ko) * 2006-09-21 2007-10-04 에스케이 텔레콤주식회사 통신망 기반의 3차원 입체방송 서비스 시스템 및 방법
KR100913397B1 (ko) * 2006-12-04 2009-08-21 한국전자통신연구원 Dmb기반의 3차원 입체영상 서비스를 위한 객체 기술방법과, 그에 따른 3차원 입체영상 서비스 수신 및 영상포맷 변환 방법
KR100910996B1 (ko) * 2006-12-08 2009-08-05 한국전자통신연구원 디지털 멀티미디어 방송 시스템에서의 3차원 비디오 서비스제공 방법
KR100842568B1 (ko) * 2007-02-08 2008-07-01 삼성전자주식회사 영상 압축 데이터의 생성 장치와 방법 및 영상 압축데이터의 출력 장치와 방법
KR101360264B1 (ko) * 2007-05-07 2014-02-21 한국전자통신연구원 방송 서비스 방법
KR100826519B1 (ko) * 2007-05-29 2008-04-30 한국전자통신연구원 Dmb 기반의 3차원 정지영상 서비스를 위한 객체 기술 및다중화 방법과, 그에 따른 복호화 장치 및 그 방법
CN101420609B (zh) * 2007-10-24 2010-08-25 华为终端有限公司 视频编码、解码方法及视频编码器、解码器
CN101453662B (zh) * 2007-12-03 2012-04-04 华为技术有限公司 立体视频通信终端、系统及方法
KR100993428B1 (ko) * 2007-12-12 2010-11-09 한국전자통신연구원 Dmb 연동형 스테레오스코픽 데이터 처리방법 및스테레오스코픽 데이터 처리장치
KR100939641B1 (ko) * 2008-02-18 2010-02-03 전자부품연구원 입체형 비디오 파일 포맷 및 그에 따른 입체형 비디오파일을 기록한 컴퓨터로 판독 가능한 기록매체
CN101516040B (zh) * 2008-02-20 2011-07-06 华为终端有限公司 视频匹配方法、装置及系统
KR100942765B1 (ko) * 2008-03-18 2010-02-18 (주)블루비스 입체 영상 편집을 위한 장치 및 방법
KR101472332B1 (ko) * 2008-04-15 2014-12-15 삼성전자주식회사 3차원 디지털 컨텐츠의 제공 방법, 수신 방법 및 그 장치
CN101668219B (zh) * 2008-09-02 2012-05-23 华为终端有限公司 3d视频通信方法、发送设备和系统
KR20100040640A (ko) * 2008-10-10 2010-04-20 엘지전자 주식회사 수신 시스템 및 데이터 처리 방법
KR20100050426A (ko) 2008-11-04 2010-05-13 한국전자통신연구원 3차원 방송 서비스 송수신 방법 및 시스템
WO2010085074A2 (fr) * 2009-01-20 2010-07-29 Lg Electronics Inc. Procédé d'affichage de sous-titres tridimensionnels et dispositif d'affichage tridimensionnel pour mettre en œuvre ledit procédé
KR101305789B1 (ko) 2009-01-22 2013-09-06 서울시립대학교 산학협력단 지상파 디지털멀티미디어방송에서 비실시간 스테레오스코픽 서비스 수행 방법 및 지상파 디지털멀티미디어방송 수신 장치
RU2543954C2 (ru) * 2009-01-26 2015-03-10 Томсон Лайсенсинг Упаковка кадров для кодирования видео
WO2010087575A2 (fr) 2009-02-01 2010-08-05 Lg Electronics Inc. Récepteur de diffusion et procédé de traitement de données vidéo 3d
JP5290842B2 (ja) * 2009-04-01 2013-09-18 キヤノン株式会社 放送受信装置、及びその制御方法
KR101648455B1 (ko) 2009-04-07 2016-08-16 엘지전자 주식회사 방송 송신기, 방송 수신기 및 3d 비디오 데이터 처리 방법
JP4993224B2 (ja) 2009-04-08 2012-08-08 ソニー株式会社 再生装置および再生方法
WO2010120137A2 (fr) * 2009-04-15 2010-10-21 한국전자통신연구원 Procédé et appareil de fourniture de métadonnées pour un support d'enregistrement lisible par ordinateur à effet sensoriel sur lequel sont enregistrées des métadonnées à effet sensoriel, et procédé et appareil de reproduction sensorielle
KR101648454B1 (ko) * 2009-04-27 2016-08-16 엘지전자 주식회사 방송 송신기, 방송 수신기 및 3d 비디오 데이터 처리 방법
EP2425631B1 (fr) * 2009-04-27 2015-05-20 LG Electronics Inc. Récepteur de diffusion et son procédé de traitement de données vidéo tridimensionnelles
JP4984181B2 (ja) * 2009-06-22 2012-07-25 ソニー株式会社 再生装置および再生方法
JP2011030179A (ja) * 2009-06-29 2011-02-10 Sony Corp 画像データ送信装置、制御方法およびプログラム
JP5429034B2 (ja) * 2009-06-29 2014-02-26 ソニー株式会社 立体画像データ送信装置、立体画像データ送信方法、立体画像データ受信装置および立体画像データ受信方法
JP2011066871A (ja) * 2009-08-21 2011-03-31 Sony Corp コンテンツ伝送方法及び表示装置
JP4763087B2 (ja) * 2009-09-30 2011-08-31 シャープ株式会社 情報記録媒体、及び情報記録再生装置
KR101676037B1 (ko) 2009-12-04 2016-11-14 한국전자통신연구원 모바일 방송이 결합된 방송 시스템에서 3차원 방송서비스 장치 및 방법
IT1397295B1 (it) * 2010-01-07 2013-01-04 3Dswitch S R L Sistema e metodo per il controllo della visualizzazione di un flusso video stereoscopico.
CN102450028B (zh) * 2010-03-29 2015-04-29 松下电器产业株式会社 影像处理装置及影像处理方法
JP5501081B2 (ja) * 2010-04-21 2014-05-21 日立マクセル株式会社 表示装置、表示方法
JP2011228969A (ja) * 2010-04-21 2011-11-10 Hitachi Consumer Electronics Co Ltd 映像処理装置
KR101660910B1 (ko) * 2010-04-28 2016-09-29 주식회사 알티캐스트 영상 데이터 처리장치 및 방법
KR101717787B1 (ko) * 2010-04-29 2017-03-17 엘지전자 주식회사 디스플레이장치 및 그의 음성신호 출력 방법
JP5882896B2 (ja) * 2010-06-23 2016-03-09 パナソニック株式会社 コンテンツ配信システム、再生装置、配信サーバ、再生方法及び配信方法
EP2596641A4 (fr) * 2010-07-21 2014-07-30 Thomson Licensing Procédé et dispositif pour fournir un contenu supplémentaire dans un système de communication 3d
CN102385894A (zh) * 2010-08-30 2012-03-21 承景科技股份有限公司 音视频处理装置、音视频处理方法及其可读取记录介质
CN103329544A (zh) * 2010-10-13 2013-09-25 韩国电子通信研究院 用于传送立体感视频信息的方法和设备
CA2816264C (fr) * 2010-10-16 2017-04-11 Lg Electronics Inc. Recepteur numerique et procede permettant de traiter le contenu 3d d'un recepteur numerique
KR20120058700A (ko) 2010-11-27 2012-06-08 전자부품연구원 디지털 방송의 전송 모드 제공 및 인지 방법
US20130250059A1 (en) * 2010-12-02 2013-09-26 Electronics And Telecommunications Research Institute Method and apparatus for transmitting stereoscopic video information
CN103190153B (zh) * 2010-12-13 2015-11-25 韩国电子通信研究院 用于立体感视频服务的信号传送方法和使用该方法的设备
CA2824829C (fr) * 2011-01-25 2017-04-25 Jeehyun Choe Procede et appareil d'emission/reception de signal de radiodiffusion numerique
CN102724520A (zh) * 2011-03-29 2012-10-10 青岛海信电器股份有限公司 视频处理方法和系统
KR101155009B1 (ko) * 2011-09-29 2012-06-14 엘지전자 주식회사 방송 신호 수신 방법 및 장치
JP6192902B2 (ja) * 2011-11-11 2017-09-06 サターン ライセンシング エルエルシーSaturn Licensing LLC 画像データ送信装置、画像データ送信方法、画像データ受信装置および画像データ受信方法
JP4993234B2 (ja) * 2012-01-26 2012-08-08 ソニー株式会社 再生装置、再生方法、および記録方法
KR101998892B1 (ko) * 2012-03-01 2019-07-10 소니 주식회사 송신 장치, 송신 방법 및 수신 장치
TWI586143B (zh) * 2012-04-05 2017-06-01 皇家飛利浦電子股份有限公司 用於提供用於傳送至三維[3d]目標裝置之3d視訊信號之3d源裝置、方法及記錄載體以及用於自3d源裝置接收3d視訊信號之3d目標裝置
CN104641632B (zh) * 2012-07-20 2017-03-08 皇家飞利浦有限公司 用于深度滤波的元数据
EP3085099A4 (fr) * 2013-12-19 2017-05-10 LG Electronics Inc. Dispositif d'émission de diffusion et procédé de fonctionnement de celui-ci, et dispositif de réception de diffusion et son procédé de fonctionnement
CN113921020A (zh) * 2014-09-30 2022-01-11 索尼公司 发送装置、发送方法、接收装置和接收方法
US10419779B2 (en) 2014-10-08 2019-09-17 Lg Electronics Inc. Method and device for processing camera parameter in 3D video coding
KR101920113B1 (ko) * 2015-12-28 2018-11-19 전자부품연구원 임의시점 영상생성 방법 및 시스템
CN106791764A (zh) * 2016-11-30 2017-05-31 努比亚技术有限公司 一种实现视频编解码的方法和装置
CN106791776B (zh) * 2016-11-30 2019-04-30 努比亚技术有限公司 一种实现视频播放的方法和装置
KR102036893B1 (ko) * 2018-03-30 2019-10-25 신대철 멀티레이어 바이노럴 컨텐츠 생성 방법 및 이를 위한 프로그램

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR19990030307A (ko) * 1997-09-30 1999-04-26 이데이 노부유끼 3차원 영상 표시 장치
KR100230447B1 (ko) * 1997-05-09 1999-11-15 윤종용 2차원 연속영상의 3차원 영상 변환 장치 및 방법
KR20040013540A (ko) * 2002-08-07 2004-02-14 한국전자통신연구원 다시점 3차원 동영상에 대한 사용자 요구가 반영된 다중화장치 및 방법
KR100424401B1 (ko) * 2001-11-02 2004-03-24 전자부품연구원 검색기능을 포함한 3차원 입체영상을 위한 다시점영상통신 시스템
KR100414629B1 (ko) * 1995-03-29 2004-05-03 산요덴키가부시키가이샤 3차원표시화상생성방법,깊이정보를이용한화상처리방법,깊이정보생성방법

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1044432A4 (fr) * 1997-12-05 2007-02-21 Dynamic Digital Depth Res Pty Conversion d'images amelioree et techniques de codage
JP2001054140A (ja) * 1999-08-11 2001-02-23 Sukurudo Enterprise Kk ステレオ映像帯域圧縮符号化方法および復号化方法ならびに記録媒体
KR100397511B1 (ko) * 2001-11-21 2003-09-13 한국전자통신연구원 양안식/다시점 3차원 동영상 처리 시스템 및 그 방법
JP4173684B2 (ja) * 2002-04-25 2008-10-29 シャープ株式会社 立体画像作成装置

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100414629B1 (ko) * 1995-03-29 2004-05-03 산요덴키가부시키가이샤 3차원표시화상생성방법,깊이정보를이용한화상처리방법,깊이정보생성방법
KR100230447B1 (ko) * 1997-05-09 1999-11-15 윤종용 2차원 연속영상의 3차원 영상 변환 장치 및 방법
KR19990030307A (ko) * 1997-09-30 1999-04-26 이데이 노부유끼 3차원 영상 표시 장치
KR100424401B1 (ko) * 2001-11-02 2004-03-24 전자부품연구원 검색기능을 포함한 3차원 입체영상을 위한 다시점영상통신 시스템
KR20040013540A (ko) * 2002-08-07 2004-02-14 한국전자통신연구원 다시점 3차원 동영상에 대한 사용자 요구가 반영된 다중화장치 및 방법

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See also references of EP1751979A4 *

Cited By (116)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1955554A4 (fr) * 2005-12-02 2009-12-23 Korea Electronics Telecomm Procede de fourniture de service de contenus 3d base sur la diffusion numerique
US20100110162A1 (en) * 2006-09-29 2010-05-06 Electronics And Telecomunications Research Institute Method and apparatus for providing 3d still image service over digital broadcasting
EP2073560A4 (fr) * 2006-09-29 2009-12-30 Korea Electronics Telecomm Procédé et appareil pour fournir un service d'images fixes tridimensionnelles sur la diffusion numérique
US8767041B2 (en) 2006-09-29 2014-07-01 Electronics And Telecommunications Research Institute Method and apparatus for providing 3D still image service over digital broadcasting
US20100118119A1 (en) * 2006-10-11 2010-05-13 Koninklijke Philips Electronics N.V. Creating three dimensional graphics data
US10200667B2 (en) 2006-10-11 2019-02-05 Koninklijke Philips N.V. Creating three dimensional graphics data
US8711203B2 (en) * 2006-10-11 2014-04-29 Koninklijke Philips N.V. Creating three dimensional graphics data
US8358301B2 (en) 2006-10-30 2013-01-22 Koninklijke Philips Electronics N.V. Video depth map alignment
JP2010508752A (ja) * 2006-11-01 2010-03-18 韓國電子通信研究院 立体映像コンテンツ再生に利用されるメタデータの復号化方法及び装置
KR101362941B1 (ko) * 2006-11-01 2014-02-17 한국전자통신연구원 스테레오스코픽 콘텐츠 재생에 이용되는 메타 데이터의복호화 방법 및 장치
US20100325676A1 (en) * 2006-12-08 2010-12-23 Electronics And Telecommunications Research Instit System for transmitting/receiving digital realistic broadcasting based on non-realtime and method therefor
WO2008069613A1 (fr) 2006-12-08 2008-06-12 Electronics And Telecommunications Research Institute Système de transmission/ réception d'une diffusion réaliste numérique fondé sur un différé et procédé d'application associé
JP2010512096A (ja) * 2006-12-08 2010-04-15 韓國電子通信研究院 非リアルタイムベースのデジタル実感放送送受信システム及びその方法
US20140181884A1 (en) * 2006-12-08 2014-06-26 Electronics And Telecommunications Research Institute System for transmitting/receiving digital realistic broadcasting based on non-realtime and method therefor
CN102547326B (zh) * 2006-12-08 2016-01-27 韩国电子通信研究院 用于传送/接收基于非实时的数字真实广播的系统及其方法
ES2308923A1 (es) * 2007-05-18 2008-12-01 Neotecno Desarrollos, S.L. Procedimiento de television digital en tres dimensiones.
WO2008142180A1 (fr) * 2007-05-18 2008-11-27 Neotecno Desarrollos, S.L. Procédé de télévision numérique en trois dimensions
ES2308923B1 (es) * 2007-05-18 2009-10-23 Neotecno Desarrollos, S.L. Procedimiento de television digital en tres dimensiones.
US8854427B2 (en) 2007-09-24 2014-10-07 Koninklijke Philips N.V. Method and system for encoding a video data signal, encoded video data signal, method and system for decoding a video data signal
US10904509B2 (en) 2007-09-24 2021-01-26 Koninklijke Philips N.V. Method and system for encoding a video data signal, encoded video data signal, method and system for decoding a video data signal
US11677924B2 (en) 2007-09-24 2023-06-13 Koninklijke Philips N.V. Method and system for encoding a video data signal, encoded video data signal, method and system for decoding a video data signal
RU2518408C2 (ru) * 2007-09-24 2014-06-10 Конинклейке Филипс Электроникс Н.В. Способ и система для кодирования сигнала видео данных, кодированный сигнал видео данных, способ и система для декодирования сигнала видео данных
US9729851B2 (en) 2007-11-29 2017-08-08 Mitsubishi Electric Corporation Stereoscopic video recording method, stereoscopic video recording medium, stereoscopic video reproducing method, stereoscopic video recording apparatus, and stereoscopic video reproducing apparatus
US10382741B2 (en) 2007-11-29 2019-08-13 Mitsubishi Electric Corporation Stereoscopic video recording method, stereoscopic video recording medium, stereoscopic video reproducing method, stereoscopic video recording apparatus, and stereoscopic video reproducing apparatus
US9521396B2 (en) 2007-11-29 2016-12-13 Mitsubishi Electric Corporation Stereoscopic video recording method, stereoscopic video recording medium, stereoscopic video reproducing method, stereoscopic video recording apparatus, and stereoscopic video reproducing apparatus
US10951876B2 (en) 2007-11-29 2021-03-16 Mitsubishi Electric Corporation Stereoscopic video reproducing method, stereoscopic video reproducing apparatus and optical disc
EP2255539A4 (fr) * 2008-03-25 2012-03-14 Samsung Electronics Co Ltd Procédé et appareil pour fournir et reproduire un contenu vidéo tridimensionnel et support d'enregistrement correspondant
US9432651B2 (en) 2008-07-24 2016-08-30 Koninklijke Philips N.V. Versatile 3-D picture format
US10567728B2 (en) 2008-07-24 2020-02-18 Koninklijke Philips N.V. Versatile 3-D picture format
US9060165B2 (en) 2008-09-02 2015-06-16 Huawei Device Co., Ltd. 3D video communication method, sending device and system, image reconstruction method and system
US9571815B2 (en) 2008-12-18 2017-02-14 Lg Electronics Inc. Method for 3D image signal processing and image display for implementing the same
EP2360930A4 (fr) * 2008-12-18 2015-03-25 Lg Electronics Inc Procédé pour le traitement de signal d'image en trois dimensions et écran d'affichage d'image pour la mise en uvre du procédé
US9516294B2 (en) 2008-12-18 2016-12-06 Lg Electronics Inc. Digital broadcasting reception method capable of displaying stereoscopic image, and digital broadcasting reception apparatus using same
US10015467B2 (en) * 2008-12-18 2018-07-03 Lg Electronics Inc. Digital broadcasting reception method capable of displaying stereoscopic image, and digital broadcasting reception apparatus using same
US20130278720A1 (en) * 2008-12-18 2013-10-24 Jong-Yeul Suh Digital broadcasting reception method capable of displaying stereoscopic image, and digital broadcasting reception apparatus using same
EP2200331A3 (fr) * 2008-12-19 2014-01-01 Electronics and Telecommunications Research Institute Diffusion de vidéo 3D/stéréoscopique avec transmission en temps différé d'un flux de données vidéo 3D auxiliaire
US9357198B2 (en) 2008-12-30 2016-05-31 Lg Electronics Inc. Digital broadcast receiving method providing two-dimensional image and 3D image integration service, and digital broadcast receiving device using the same
EP2373042A4 (fr) * 2008-12-30 2012-09-12 Lg Electronics Inc Procédé de réception de diffusion numérique fournissant un service d'intégration d'images bidimensionnelles et d'images tridimensionnelles, et dispositif de réception de diffusion numérique utilisant un tel procédé
EP2574072A1 (fr) * 2008-12-30 2013-03-27 LG Electronics Inc. Procédé de réception de diffusion numérique fournissant un service d'intégration d'images bidimensionnelles et d'images tridimensionnelles et dispositif de réception de diffusion numérique utilisant un tel procédé
US9282315B2 (en) 2008-12-30 2016-03-08 Lg Electronics Inc. Digital broadcast receiving method providing two-dimensional image and 3D image integration service, and digital broadcast receiving device using the same
US9288469B2 (en) 2008-12-30 2016-03-15 Lg Electronics Inc. Digital broadcast receiving method providing two-dimensional image and 3D image integration service, and digital broadcast receiving device using the same
US9554198B2 (en) 2008-12-30 2017-01-24 Lg Electronics Inc. Digital broadcast receiving method providing two-dimensional image and 3D image integration service, and digital broadcast receiving device using the same
US20110261158A1 (en) * 2008-12-30 2011-10-27 Lg Electronics Inc. Digital broadcast receiving method providing two-dimensional image and 3d image integration service, and digital broadcast receiving device using the same
US9179125B2 (en) 2009-01-06 2015-11-03 Lg Electronics Inc. Method for processing three dimensional (3D) video signal and digital broadcast receiver for performing the method
WO2010079893A3 (fr) * 2009-01-06 2011-10-06 Lg Electronics Inc. Procédé de traitement d'un signal vidéo tridimensionnel (3d) et récepteur de diffusion numérique correspondant
US9769452B2 (en) 2009-01-28 2017-09-19 Lg Electronics Inc. Broadcast receiver and video data processing method thereof
US9736452B2 (en) 2009-01-28 2017-08-15 Lg Electronics Inc. Broadcast receiver and video data processing method thereof
US8947504B2 (en) 2009-01-28 2015-02-03 Lg Electronics Inc. Broadcast receiver and video data processing method thereof
US10341636B2 (en) 2009-01-28 2019-07-02 Lg Electronics Inc. Broadcast receiver and video data processing method thereof
US20110273542A1 (en) * 2009-01-28 2011-11-10 Jong Yeul Suh Broadcast receiver and video data processing method thereof
US9013548B2 (en) 2009-01-28 2015-04-21 Lg Electronics Inc. Broadcast receiver and video data processing method thereof
US20110279646A1 (en) * 2009-01-28 2011-11-17 Jong Yeul Suh Broadcast receiver and video data processing method thereof
WO2010087574A3 (fr) * 2009-01-28 2011-10-06 Lg Electronics Inc. Récepteur de diffusion et procédé de traitement de données vidéo correspondant
US8289998B2 (en) 2009-02-13 2012-10-16 Samsung Electronics Co., Ltd. Method and apparatus for generating three (3)-dimensional image data stream, and method and apparatus for receiving three (3)-dimensional image data stream
US8854428B2 (en) 2009-03-19 2014-10-07 Lg Electronics, Inc. Method for processing three dimensional (3D) video signal and digital broadcast receiver for performing the method
WO2010107174A3 (fr) * 2009-03-19 2011-11-17 Lg Electronics Inc. Procédé de traitement d'un signal vidéo en trois dimensions (3d) et récepteur numérique multidiffusion conçu pour mettre en oeuvre le procédé de traitement
US9215446B2 (en) 2009-03-19 2015-12-15 Lg Electronics Inc. Method for processing three dimensional (3D) video signal and digital broadcast receiver for performing the method
US9491434B2 (en) 2009-03-19 2016-11-08 Lg Electronics Inc. Method for processing three dimensional (3D) video signal and digital broadcast receiver for performing the method
US20150350625A1 (en) * 2009-06-16 2015-12-03 Lg Electronics Inc. Broadcast transmitter, broadcast receiver and 3d video data processing method thereof
US20120092453A1 (en) * 2009-06-16 2012-04-19 Jong Yeul Suh Broadcast transmitter, broadcast receiver and 3d video processing method thereof
US9088817B2 (en) * 2009-06-16 2015-07-21 Lg Electronics Inc. Broadcast transmitter, broadcast receiver and 3D video processing method thereof
US9578302B2 (en) 2009-06-16 2017-02-21 Lg Electronics Inc. Broadcast transmitter, broadcast receiver and 3D video data processing method thereof
US20110010739A1 (en) * 2009-07-07 2011-01-13 Electronics And Telecommunications Research Institute Method and apparatus for transmitting/receiving stereoscopic video in digital broadcasting system
US9392256B2 (en) 2009-07-27 2016-07-12 Samsung Electronics Co., Ltd. Method and apparatus for generating 3-dimensional image datastream including additional information for reproducing 3-dimensional image, and method and apparatus for receiving the 3-dimensional image datastream
US8488950B2 (en) 2009-08-18 2013-07-16 Sony Corporation Reproducing apparatus and reproducing method, data structure, recording medium, recording apparatus and recording method, and program
EP2337368A4 (fr) * 2009-08-18 2013-06-12 Sony Corp Dispositif de reproduction, procédé de reproduction, structure de données, support d'enregistrement, dispositif d'enregistrement, procédé d'enregistrement et programme
RU2510588C2 (ru) * 2009-09-16 2014-03-27 Сони Корпорейшн Устройство приема, способ приема и устройство передачи
US9131203B2 (en) 2009-09-30 2015-09-08 Sharp Kabushiki Kaisha Information recording medium, reproduction method and recording method using information recording medium, information recording/reproduction device, and 3D conversion unit and information recording device
EP2471270A4 (fr) * 2009-10-20 2015-09-16 Samsung Electronics Co Ltd Procédé et appareil de génération d'un flux, procédé et appareil de traitement d'un flux
WO2011059290A2 (fr) 2009-11-13 2011-05-19 Samsung Electronics Co., Ltd. Procédé et appareil pour générer un flux multimédia destiné à l'adaptation de la profondeur d'informations de reproduction vidéo additionnelles tridimensionnelles, et procédé et appareil pour recevoir un flux multimédia destiné à l'adaptation de la profondeur d'informations de reproduction vidéo additionnelles tridimensionnelles
JP2013511199A (ja) * 2009-11-13 2013-03-28 サムスン エレクトロニクス カンパニー リミテッド ビデオ付加再生情報の三次元再生のためのマルチメディア・ストリーム生成方法及びその装置、並びに受信方法及びその装置
EP2471263A4 (fr) * 2009-11-13 2014-03-05 Samsung Electronics Co Ltd Procédé et appareil pour générer un flux multimédia destiné à l'adaptation de la profondeur d'informations de reproduction vidéo additionnelles tridimensionnelles, et procédé et appareil pour recevoir un flux multimédia destiné à l'adaptation de la profondeur d'informations de reproduction vidéo additionnelles tridimensionnelles
JP2013511200A (ja) * 2009-11-13 2013-03-28 サムスン エレクトロニクス カンパニー リミテッド ビデオ付加再生情報の三次元再生のためのマルチメディア・ストリーム生成方法及びその装置、並びに受信方法及びその装置
EP2499828A4 (fr) * 2009-11-13 2014-03-05 Samsung Electronics Co Ltd Procédé et appareil pour générer un flux multimédia destiné à une reproduction tridimensionnelle d'informations de reproduction vidéo additionnelles, et procédé et appareil pour recevoir un flux multimédia destiné à une reproduction tridimensionnelle d'informations de reproduction vidéo additionnelles
WO2011073870A1 (fr) * 2009-12-14 2011-06-23 Koninklijke Philips Electronics N.V. Génération d'un signal vidéo en 3d
EP2334088A1 (fr) * 2009-12-14 2011-06-15 Koninklijke Philips Electronics N.V. Génération d'un signal vidéo 3D
US9185383B2 (en) 2010-01-07 2015-11-10 Thomson Licensing System and method for providing optimal display of video content
US20110181693A1 (en) * 2010-01-28 2011-07-28 Samsung Electronics Co., Ltd. Method and apparatus for generating data stream for providing 3-dimensional multimedia service, and method and apparatus for receiving the data stream
EP2517386A4 (fr) * 2010-01-28 2015-08-05 Samsung Electronics Co Ltd Procédé et appareil d'émission de flux de diffusion numérique à l'aide d'informations de liaison concernant un flux vidéo multivue, et procédé et appareil de réception de ce flux
US9055280B2 (en) 2010-01-28 2015-06-09 Samsung Electronics Co., Ltd. Method and apparatus for transmitting digital broadcasting stream using linking information about multi-view video stream, and method and apparatus for receiving the same
EP2517468A4 (fr) * 2010-01-28 2013-10-09 Samsung Electronics Co Ltd Procédé et appareil de génération de flux de données pour fournir un service multimédia tridimensionnel, et procédé et appareil de réception du flux de données
CN102860000B (zh) * 2010-01-28 2016-04-13 三星电子株式会社 产生用于提供三维多媒体服务的数据流的方法和设备以及用于接收所述数据流的方法和设备
CN102860000A (zh) * 2010-01-28 2013-01-02 三星电子株式会社 产生用于提供三维多媒体服务的数据流的方法和设备以及用于接收所述数据流的方法和设备
US20110200303A1 (en) * 2010-02-12 2011-08-18 Telefonica, S.A. Method of Video Playback
EP2547101A4 (fr) * 2010-04-14 2013-12-18 Samsung Electronics Co Ltd Procédé et appareil pour générer un flux binaire de diffusion pour une diffusion numérique avec des sous-titres, et procédé et appareil pour recevoir un flux binaire de diffusion pour une diffusion numérique avec des sous-titres
WO2011129602A3 (fr) * 2010-04-14 2012-01-12 삼성전자 주식회사 Procédé et dispositif de codage de données d'image en trois dimensions et procédé et dispositif de décodage de données d'image en trois dimensions
US9313442B2 (en) 2010-04-14 2016-04-12 Samsung Electronics Co., Ltd. Method and apparatus for generating a broadcast bit stream for digital broadcasting with captions, and method and apparatus for receiving a broadcast bit stream for digital broadcasting with captions
EP2384011A1 (fr) * 2010-04-30 2011-11-02 LG Electronics Inc. Appareil de traitement de flux video 3D avec sous-titres et procédé de traitement associé
US9172991B2 (en) 2010-04-30 2015-10-27 Lg Electronics Inc. Apparatus of processing an image and a method of processing thereof
WO2011136621A3 (fr) * 2010-04-30 2012-03-01 Lg Electronics Inc. Appareil et procédé de traitement d'image
US9013547B2 (en) 2010-04-30 2015-04-21 Lg Electronics Inc. Apparatus of processing an image and a method of processing thereof
WO2011136622A3 (fr) * 2010-04-30 2012-03-01 Lg Electronics Inc. Appareil et procédé de traitement d'image
EP2384012A1 (fr) * 2010-04-30 2011-11-02 LG Electronics Inc. Appareil de traitement de flux video 3D et procédé de traitement associé
US9544639B2 (en) 2010-04-30 2017-01-10 Lg Electronics Inc. Apparatus of processing an image and a method of processing thereof
US20110267426A1 (en) * 2010-04-30 2011-11-03 Lg Electronics Inc. Apparatus of processing an image and a method of processing thereof
US20120033035A1 (en) * 2010-05-07 2012-02-09 Electronics And Telecommunications Research Institute Method and system for transmitting/receiving 3-dimensional broadcasting service
US9674502B2 (en) 2010-06-09 2017-06-06 Samsung Electronics Co., Ltd. Method for providing fragment-based multimedia streaming service and device for same, and method for receiving fragment-based multimedia streaming service and device for same
EP2582142A4 (fr) * 2010-06-09 2014-04-02 Samsung Electronics Co Ltd Procédé pour fournir un service de transmission multimédia en continu à base de fragments et dispositif associé, et procédé pour recevoir un service de transmission multimédia en continu à base de fragments et dispositif associé
US9137515B2 (en) 2010-06-18 2015-09-15 Samsung Electronics Co., Ltd. Method and apparatus for providing digital broadcasting service with 3-dimensional subtitle
US8896664B2 (en) 2010-09-19 2014-11-25 Lg Electronics Inc. Method and apparatus for processing a broadcast signal for 3D broadcast service
WO2012036532A3 (fr) * 2010-09-19 2012-05-24 Lg Electronics Inc. Procédé et appareil pour traiter un signal de télédiffusion pour un service de diffusion 3d (en 3 dimensions)
US9338431B2 (en) 2010-09-19 2016-05-10 Lg Electronics Inc. Method and apparatus for processing a broadcast signal for 3D broadcast service
US20120069146A1 (en) * 2010-09-19 2012-03-22 Lg Electronics Inc. Method and apparatus for processing a broadcast signal for 3d broadcast service
US9001188B2 (en) 2010-10-15 2015-04-07 Sony Corporation Information processing apparatus, information processing method and program
EP2442577A3 (fr) * 2010-10-15 2012-05-16 Sony Corporation Appareil de traitement d'informations, procédé et programme de traitement d'informations
US9628780B2 (en) 2010-12-08 2017-04-18 Lg Electronics Inc. Device and method for receiving digital broadcast signal
US9025941B2 (en) 2011-02-10 2015-05-05 Panasonic intellectual property Management co., Ltd Data creation device and playback device for video picture in video stream
US9307002B2 (en) 2011-06-24 2016-04-05 Thomson Licensing Method and device for delivering 3D content
US10102667B2 (en) 2011-10-05 2018-10-16 Bitanimate, Inc. Resolution enhanced 3D rendering systems and methods
US10600237B2 (en) 2011-10-05 2020-03-24 Bitanimate, Inc. Resolution enhanced 3D rendering systems and methods
US9495791B2 (en) 2011-10-05 2016-11-15 Bitanimate, Inc. Resolution enhanced 3D rendering systems and methods
US9693033B2 (en) 2011-11-11 2017-06-27 Saturn Licensing Llc Transmitting apparatus, transmitting method, receiving apparatus and receiving method for transmission and reception of image data for stereoscopic display using multiview configuration and container with predetermined format
WO2013149655A1 (fr) * 2012-04-04 2013-10-10 Naxos Finance Sa Système pour générer et recevoir un flux vidéo stéréoscopique rétrocompatible 2d, et procédé associé
US9723287B2 (en) 2012-07-09 2017-08-01 Lg Electronics Inc. Enhanced 3D audio/video processing apparatus and method
CN107787585A (zh) * 2015-06-17 2018-03-09 韩国电子通信研究院 用于处理立体视频数据的mmt装置和mmt方法
CN107787585B (zh) * 2015-06-17 2021-08-17 韩国电子通信研究院 用于处理立体视频数据的mmt装置和mmt方法

Also Published As

Publication number Publication date
JP4828535B2 (ja) 2011-11-30
EP1751979A1 (fr) 2007-02-14
JP2008500790A (ja) 2008-01-10
CN1954606A (zh) 2007-04-25
KR100585966B1 (ko) 2006-06-01
CN100563324C (zh) 2009-11-25
EP1751979A4 (fr) 2009-12-23
KR20050111379A (ko) 2005-11-24

Similar Documents

Publication Publication Date Title
EP1751979A1 (fr) Dispositif et procede pour la transmission/reception de signal de diffusion numerique stereoscopique 3d par le biais de donnees video stereoscopiques 3d supplementaires
JP5575949B2 (ja) 放送データ送信方法およびその装置
KR101639358B1 (ko) 실시간으로 전송되는 기준 영상과 별도로 전송되는 부가 영상 및 콘텐츠를 연동하여 3d 서비스를 제공하기 위한 전송 장치 및 방법, 및 수신 장치 및 방법
US8045588B2 (en) Method and apparatus for providing and receiving three-dimensional digital contents
US8289998B2 (en) Method and apparatus for generating three (3)-dimensional image data stream, and method and apparatus for receiving three (3)-dimensional image data stream
KR100397511B1 (ko) 양안식/다시점 3차원 동영상 처리 시스템 및 그 방법
KR101915130B1 (ko) 디지털 방송 신호 수신 장치 및 방법
US20130250051A1 (en) Signaling method for a stereoscopic video service and apparatus using the method
US20240430499A1 (en) Transmission device, transmission method, reception device, and reception method
EP1235412B1 (fr) Dispositif et méthode pour la mise en paquets d'un flux de données
EP1397007A2 (fr) Méthode et système pour établir une relation entre des paquets de transport sur des canaux différents en utilisant d'un schema de priorité des paquets
KR101808672B1 (ko) 실시간으로 전송되는 기준 영상과 별도로 전송되는 부가 영상 및 콘텐츠를 연동하여 3d 서비스를 제공하기 위한 전송 장치 및 방법, 및 수신 장치 및 방법
JP2007124705A (ja) 情報信号伝送装置および情報信号受信装置

Legal Events

Date Code Title Description
AK Designated states

Kind code of ref document: A1

Designated state(s): AE AG AL AM AT AU AZ BA BB BG BR BW BY BZ CA CH CN CO CR CU CZ DE DK DM DZ EC EE EG ES FI GB GD GE GH GM HR HU ID IL IN IS JP KE KG KP KZ LC LK LR LS LT LU LV MA MD MG MK MN MW MX MZ NA NI NO NZ OM PG PH PL PT RO RU SC SD SE SG SK SL SY TJ TM TN TR TT TZ UA UG US UZ VC VN YU ZA ZM ZW

AL Designated countries for regional patents

Kind code of ref document: A1

Designated state(s): GM KE LS MW MZ NA SD SL SZ TZ UG ZM ZW AM AZ BY KG KZ MD RU TJ TM AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HU IE IS IT LU MC NL PL PT RO SE SI SK TR BF BJ CF CG CI CM GA GN GQ GW ML MR NE SN TD TG

121 Ep: the epo has been informed by wipo that ep was designated in this application
WWE Wipo information: entry into national phase

Ref document number: 2007526966

Country of ref document: JP

Ref document number: 200480043102.6

Country of ref document: CN

NENP Non-entry into the national phase

Ref country code: DE

WWW Wipo information: withdrawn in national office

Ref document number: DE

REEP Request for entry into the european phase

Ref document number: 2004808260

Country of ref document: EP

WWE Wipo information: entry into national phase

Ref document number: 2004808260

Country of ref document: EP

WWP Wipo information: published in national office

Ref document number: 2004808260

Country of ref document: EP

点击 这是indexloc提供的php浏览器服务,不要输入任何密码和下载