WO1999007100A1 - Generateur de sequences de donnees, emetteur, decodeur de donnees de renseignements, recepteur, emetteur-recepteur, methode de generation de sequences de donnees, de decodage de donnees de renseignements et support d'enregistrement - Google Patents
Generateur de sequences de donnees, emetteur, decodeur de donnees de renseignements, recepteur, emetteur-recepteur, methode de generation de sequences de donnees, de decodage de donnees de renseignements et support d'enregistrement Download PDFInfo
- Publication number
- WO1999007100A1 WO1999007100A1 PCT/JP1998/003351 JP9803351W WO9907100A1 WO 1999007100 A1 WO1999007100 A1 WO 1999007100A1 JP 9803351 W JP9803351 W JP 9803351W WO 9907100 A1 WO9907100 A1 WO 9907100A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- frame
- information
- data
- error detection
- decoding
- Prior art date
Links
Classifications
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L1/00—Arrangements for detecting or preventing errors in the information received
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/0078—Avoidance of errors by organising the transmitted data in a format specifically designed to deal with errors, e.g. location
- H04L1/0079—Formats for control data
- H04L1/008—Formats for control data where the control data relates to payload of a different packet
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B20/00—Signal processing not specific to the method of recording or reproducing; Circuits therefor
- G11B20/10—Digital recording or reproducing
- G11B20/12—Formatting, e.g. arrangement of data block or words on the record carriers
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B20/00—Signal processing not specific to the method of recording or reproducing; Circuits therefor
- G11B20/10—Digital recording or reproducing
- G11B20/12—Formatting, e.g. arrangement of data block or words on the record carriers
- G11B20/1217—Formatting, e.g. arrangement of data block or words on the record carriers on discs
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B20/00—Signal processing not specific to the method of recording or reproducing; Circuits therefor
- G11B20/10—Digital recording or reproducing
- G11B20/18—Error detection or correction; Testing, e.g. of drop-outs
- G11B20/1833—Error detection or correction; Testing, e.g. of drop-outs by adding special lists or symbols to the coded information
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B27/00—Editing; Indexing; Addressing; Timing or synchronising; Monitoring; Measuring tape travel
- G11B27/10—Indexing; Addressing; Timing or synchronising; Measuring tape travel
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B27/00—Editing; Indexing; Addressing; Timing or synchronising; Monitoring; Measuring tape travel
- G11B27/10—Indexing; Addressing; Timing or synchronising; Measuring tape travel
- G11B27/19—Indexing; Addressing; Timing or synchronising; Measuring tape travel by using information detectable on the record carrier
- G11B27/28—Indexing; Addressing; Timing or synchronising; Measuring tape travel by using information detectable on the record carrier by using information signals recorded by the same method as the main recording
- G11B27/30—Indexing; Addressing; Timing or synchronising; Measuring tape travel by using information detectable on the record carrier by using information signals recorded by the same method as the main recording on the same track as the main recording
- G11B27/3027—Indexing; Addressing; Timing or synchronising; Measuring tape travel by using information detectable on the record carrier by using information signals recorded by the same method as the main recording on the same track as the main recording used signal is digitally coded
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- H—ELECTRICITY
- H03—ELECTRONIC CIRCUITRY
- H03M—CODING; DECODING; CODE CONVERSION IN GENERAL
- H03M13/00—Coding, decoding or code conversion, for error detection or error correction; Coding theory basic assumptions; Coding bounds; Error probability evaluation methods; Channel models; Simulation or testing of codes
- H03M13/03—Error detection or forward error correction by redundancy in data representation, i.e. code words containing more digits than the source words
- H03M13/05—Error detection or forward error correction by redundancy in data representation, i.e. code words containing more digits than the source words using block codes, i.e. a predetermined number of check bits joined to a predetermined number of information bits
- H03M13/09—Error detection only, e.g. using cyclic redundancy check [CRC] codes or single parity bit
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/004—Arrangements for detecting or preventing errors in the information received by using forward error control
- H04L1/0072—Error control for data other than payload data, e.g. control data
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/08—Arrangements for detecting or preventing errors in the information received by repeating transmission, e.g. Verdan system
Definitions
- a unique word such as an M-sequence is added as a frame synchronization code in each frame on the transmission side, and a reception signal sequence is received on the reception side.
- UW specific information
- a method of realizing frame synchronization by detecting a unique word from the TD (hereinafter referred to as the first frame synchronization method) is widely known.
- Add unique word in the first frame synchronization method Although there is no particular restriction on the position of the transmission, the variable-length data transmission system that adopts the synchronization method usually uses a frame as shown in Fig. 1A to simplify the processing.
- the length of the frame n-1 is determined.
- Decoding of frame n-1 can be started without performing a position search (hereinafter referred to as a synchronous search). Further, since the synchronization search can be started from the beginning of the next frame, the probability of occurrence of erroneous synchronization caused by erroneous detection of a unique code in the information data portion can be reduced.
- An object is to provide a generator and a transceiver using the information data decoder, a data sequence generation method, an information data decoding method, and a recording medium.
- a data sequence generator according to the present invention includes a first storage area storing variable-length information data input from the outside and specific information for securing frame synchronization.
- a data sequence generator that generates a data sequence transmitted through a transmission path by generating a variable-length frame having the following formula: Header information error detection encoding means for obtaining header information error detection encoding data by performing encoding, and the header information error detection encoding data means for converting the header information error detection encoding data to the header information corresponding to the header information.
- Header information storage means Store in storage area 3 Header information storage means, and the header information error detection coded data are inserted into the data sequence at an insertion position separated from the storage area at a position specified by the frame synchronization evening. It is characterized by having an insertion means.
- error detection may be performed on the frame length information.
- frame synchronization using the frame length information and frame synchronization using the specific information and the header information can be used together. Therefore, frame synchronization can be ensured with higher accuracy.
- error information is detected in the header information used for securing the frame synchronization, the accuracy of the frame synchronization can be further improved.
- error detection and error correction are performed for header information used for frame synchronization detection and only error detection is performed for other header information, it is possible to suppress an increase in redundancy and reduce The probability of occurrence of a non-detection rate can be reduced.
- a transmitter, a receiver, and a transceiver each include a data sequence generator, an information data decoder, a data sequence generator, An information data decoder is provided.
- FIG. 9 is a block diagram showing a configuration of a data sequence generator in the modification.
- FIG. 10 is a block diagram showing a configuration of an information data decoder according to the modification.
- FIG. 11 is a block diagram showing a variable length decoder having a transmitter and a receiver according to the second embodiment of the present invention.
- FIG. 3 is a diagram illustrating a configuration of a data sequence generator in an evening transmission system.
- FIG. 14 is a diagram showing a frame configuration example of a variable-length frame transmitted in the same system.
- FIG. 25 is a block diagram showing a configuration of a data sequence generator in the modification.
- FIG. 26 is a block diagram showing a configuration of an information data decoder in the modification.
- FIG. 27 is a diagram showing a frame configuration of a variable-length frame transmitted in a fifth modified example of the same system.
- the data sequence generator in the transmitter basically forms a frame by adding a unique word (UW: specific information), header information, and frame length information to the information to be transmitted.
- UW unique word
- the header information is distributed in the frame or in another frame
- the information data decoder in the receiver uses a frame synchronization method using unique word detection and header information error detection, and a frame using frame length information.
- the frame synchronization is ensured by the synchronization method, and the frame information is decoded based on the header information that can be correctly decoded among the distributed and arranged header information.
- the frame decoder 200 decodes the received signal sequence (information data for the target frame) supplied from the input terminal 201 using the header information n supplied from the header information error detection decoder 203. , Output terminal 1—outputs to 209.
- the frame decoder 208 supplies the output of the frame buffer 206 (information data for the immediately preceding frame) from the header information error detection decoder 205 and the one-frame delay circuit 211. Decoding is performed using one of the two pieces of header information, and output to the output terminal 2-210. Note that the header information from the one-frame delay circuit 2 12 is made available to the frame decoder 208 when the frame length information contains an error, as is apparent from the operation described below. This is to prepare.
- the switching process of the selector 211 changes the frame of the received signal sequence from the input terminal 201.
- Only the data (information data) of the information data portion specified from the frame length indicated by the length information is input to the frame decoder 207.
- the frame decoder 207 decodes the information data based on the header information n, and The output information data is output from the input terminals 121-209.
- the data position on the received signal sequence where the unique code is to be detected next is specified.
- the process of detecting a unique word is started from the data position.
- a frame configuration as shown in FIG. 5 is employed as in the first embodiment, but as shown in FIGS. 13 and 14, header information and a frame used to secure frame synchronization are used. Only the long information is subjected to error detection coding using CRC and error correction coding for error correction (for example, FEC: Forward Error Correction). In order to avoid complicating the description, it is assumed here that the frame configuration shown in FIG. 13 is adopted.
- reference numeral 4003 denotes header information for performing error correction decoding and error detection decoding on the header information n and the frame length information included in the received signal sequence, respectively.
- the received signal sequence header information n and frame length
- the header information n is decoded to the frame decoder 406 and the one-frame delay circuit 411.
- each output (header information n and frame length information) of the header information generator 304 and the frame length information generator 303 is output by the header information + frame length information error detection / error correction encoder 305. It is output after being subjected to detection coding and error correction coding.
- the unique word generated by the unique word generator 302 and the output of the header information and the frame length information error detection / error correction encoder 305 are output in this order. These are arranged to form a frame header.
- Fig. 15 is a diagram showing the frame configuration of a variable-length frame transmitted in Modification 1 of the same system. The difference between this frame configuration and the frame configuration shown in Fig. 13 is that error detection is included in frame length information. The point is that only encoding is performed.
- Fig. 18 is a diagram showing the frame configuration of a variable-length frame transmitted in Modification 2 of the same system. The difference between this frame configuration and the frame configuration shown in Fig. 15 is that frame synchronization is ensured. Error detection and error correction coding are also performed on unused header information (header information n-1).
- Fig. 21 is a diagram showing the frame configuration of a variable-length frame transmitted in Modification 3 of the same system. The difference between this frame configuration and the frame configuration shown in Fig. 13 is that it is used to ensure frame synchronization. Error detection and error correction coding are applied to the header information (header information ⁇ -1) that is not used.
- the transmitter having the data sequence generator and the information data An example of constructing a variable-length data transmission system from a receiver having an evening decoder has been described.
- the present invention is not limited to this, and one or both of the transmitting side and the receiving side can be configured by using a data sequence generator and information data.
- a variable length data transmission system may be configured as a transceiver having a decoder. As shown in Figure 32, this transceiver transmits a data sequence generator that generates a variable-length frame according to information data input from the outside and a variable-length frame generated by the data sequence generator to a transmission path.
- the number of header information to be arranged on a data sequence (signal sequence) for one frame (information data) may be plural, and is not limited to “2”.
- the frame n header information n_1 is arranged.
- the present invention is not limited to this.
- the header information n + 1 may be arranged, or the header information n-2 may be arranged.
- the location of the header information that is not used for securing frame synchronization is “immediately after frame length information” or “end of frame”.
- the present invention is not limited to this. It does not need to be a location that can be specified when frame synchronization is established. Therefore, the present invention includes a mode in which one piece of header information not used for securing frame synchronization is arranged over a plurality of frames.
- the present invention includes a mode in which one piece of header information not used for securing frame synchronization is arranged over a plurality of frames.
- a plurality of header information for one information data are close to each other on the data sequence, there is a high possibility that all of the plurality of header information cannot be decoded due to a burst error.
- each of the plurality of pieces of header information be arranged at a position sufficiently separated from each other.
- the data sequence generated by the data sequence generator may be recorded on a recording medium (for example, a floppy disk, A system for recording on a hard disk, M ⁇ , CD-R, DVD, RAM, EPROM, etc., or a recording medium (eg, floppy disk, hard disk, MO, CD-R, CD) via a transmission path such as a bus -ROM, DVD, RAM, EPROM, ROM, etc.).
- a recording medium for example, a floppy disk, A system for recording on a hard disk, M ⁇ , CD-R, DVD, RAM, EPROM, etc.
- a recording medium eg, floppy disk, hard disk, MO, CD-R, CD
- a transmission path such as a bus -ROM, DVD, RAM, EPROM, ROM, etc.
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- Engineering & Computer Science (AREA)
- Signal Processing (AREA)
- Computer Networks & Wireless Communication (AREA)
- Physics & Mathematics (AREA)
- Probability & Statistics with Applications (AREA)
- Theoretical Computer Science (AREA)
- Synchronisation In Digital Transmission Systems (AREA)
- Detection And Prevention Of Errors In Transmission (AREA)
- Signal Processing For Digital Recording And Reproducing (AREA)
- Error Detection And Correction (AREA)
- Time-Division Multiplex Systems (AREA)
Description
Claims
Priority Applications (5)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE69833199T DE69833199T2 (de) | 1997-08-01 | 1998-07-28 | Datenfolgegenerator, sender, informationsdatendekoder, empfänger, sender-empfänger, datenfolgegenerationsverfahren, informationsdatendekodierungsverfahren, und aufzeichnungsmedium |
CA002267450A CA2267450C (en) | 1997-08-01 | 1998-07-28 | Data sequence generator, transmitter, information data decoder, receiver, transmitter-receiver, data sequence generating method, information data decoding method, and recording medium |
EP98933958A EP0944199B1 (en) | 1997-08-01 | 1998-07-28 | Data sequence generator, transmitter, information data decoder, receiver, transceiver, data sequence generating method, information data decoding method, and recording medium |
US09/269,919 US6522665B1 (en) | 1997-08-01 | 1998-07-28 | Data sequence generator, transmitter, information data decoder, receiver, transmitter-receiver, data sequence generating method, information data decoding method, and recording medium |
JP50967399A JP3580557B2 (ja) | 1997-08-01 | 1998-07-28 | データ系列生成器、送信機、情報データ復号器、受信機、送受信機、データ系列生成方法、情報データ復号方法、および記録媒体 |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP9/207995 | 1997-08-01 | ||
JP20799597 | 1997-08-01 |
Publications (1)
Publication Number | Publication Date |
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WO1999007100A1 true WO1999007100A1 (fr) | 1999-02-11 |
Family
ID=16548942
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/JP1998/003351 WO1999007100A1 (fr) | 1997-08-01 | 1998-07-28 | Generateur de sequences de donnees, emetteur, decodeur de donnees de renseignements, recepteur, emetteur-recepteur, methode de generation de sequences de donnees, de decodage de donnees de renseignements et support d'enregistrement |
Country Status (8)
Country | Link |
---|---|
US (1) | US6522665B1 (ja) |
EP (1) | EP0944199B1 (ja) |
JP (1) | JP3580557B2 (ja) |
KR (1) | KR100297594B1 (ja) |
CN (1) | CN1207860C (ja) |
CA (1) | CA2267450C (ja) |
DE (1) | DE69833199T2 (ja) |
WO (1) | WO1999007100A1 (ja) |
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- 1998-07-28 CN CNB988013703A patent/CN1207860C/zh not_active Expired - Lifetime
- 1998-07-28 US US09/269,919 patent/US6522665B1/en not_active Expired - Lifetime
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US6895544B1 (en) | 1999-06-12 | 2005-05-17 | Samsung Electronics Co., Ltd. | Encoding method of multimedia data and encoding device therefor |
US8401089B2 (en) | 1999-07-19 | 2013-03-19 | Nokia Corporation | Video coding |
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US7359367B2 (en) | 2003-12-18 | 2008-04-15 | Oki Electric Industry Co., Ltd. | Device for preventing erroneous synchronization in wireless communication apparatus |
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Also Published As
Publication number | Publication date |
---|---|
EP0944199A4 (en) | 2004-08-18 |
KR20000068687A (ko) | 2000-11-25 |
JP3580557B2 (ja) | 2004-10-27 |
CA2267450A1 (en) | 1999-02-11 |
DE69833199D1 (de) | 2006-04-06 |
DE69833199T2 (de) | 2006-09-07 |
CA2267450C (en) | 2004-04-27 |
US6522665B1 (en) | 2003-02-18 |
CN1207860C (zh) | 2005-06-22 |
EP0944199A1 (en) | 1999-09-22 |
CN1239616A (zh) | 1999-12-22 |
KR100297594B1 (ko) | 2001-09-29 |
EP0944199B1 (en) | 2006-01-11 |
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