WO2018152702A1 - 一种基于治安流动站的天然气泄漏管理系统及方法 - Google Patents
一种基于治安流动站的天然气泄漏管理系统及方法 Download PDFInfo
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- G—PHYSICS
- G08—SIGNALLING
- G08B—SIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
- G08B21/00—Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
- G08B21/02—Alarms for ensuring the safety of persons
- G08B21/12—Alarms for ensuring the safety of persons responsive to undesired emission of substances, e.g. pollution alarms
- G08B21/16—Combustible gas alarms
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- G—PHYSICS
- G08—SIGNALLING
- G08B—SIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
- G08B27/00—Alarm systems in which the alarm condition is signalled from a central station to a plurality of substations
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- the present invention relates to the field of Internet of Things technologies, and in particular, to a natural gas leakage management system and method based on a security flow station.
- the embodiment of the invention discloses a natural gas leakage management system and method based on the public security rover, which enables the outside world to know the natural gas leakage inside a residential building in time to prevent serious safety accidents.
- the first aspect of the embodiments of the present invention discloses a natural gas leakage management system based on a public security rover, comprising:
- the natural gas leakage monitoring platform is used for obtaining the natural gas detection concentration of the various resident buildings reported by the resident buildings of a certain city through the Internet of Things;
- the natural gas leakage monitoring platform is further configured to determine, according to the natural gas detection concentration inside the resident building, whether a natural gas leakage occurs inside the resident building for each of the residential buildings, and if so, calculate each registered city of the city a linear distance between the location information of the security rover and the location information of the resident building; determining whether the respective security stations have the same a target security rover having a linear distance between the location information that is less than a specified threshold, and if present, transmitting natural gas leakage alert information to the target security rover through the Internet of Things, the natural gas leakage alert information including the resident building in which a natural gas leak occurs Location information and building name;
- the target security rover is configured to output the natural gas leakage alarm information.
- the sending the natural gas leakage warning information to the target security rover through the Internet of Things includes:
- the natural gas leakage monitoring platform is further configured to: when it is determined that there is no target security rover between the respective security stations and the location information of the resident building is less than a specified threshold, Each of the registered security stations of the city sends the natural gas leakage warning information;
- Each of the security traffic stations is configured to output the natural gas leakage alarm information.
- the natural gas leakage warning information also includes the number of residents entering the interior of the resident building where a natural gas leak occurs.
- the natural gas leak warning information further includes a natural gas leak location inside the resident building where the natural gas leak occurs.
- a second aspect of the embodiments of the present invention discloses a natural gas leakage management method based on a security flow station, the method comprising:
- the natural gas leakage monitoring platform obtains the natural gas detection concentration of each of the resident buildings reported by the Internet of Things registered by each resident building in a certain city;
- the natural gas leakage monitoring platform determines, for each of the residential buildings, whether a natural gas leakage occurs inside the residential building according to the natural gas detection concentration of the residential building, and if so, calculates the location of each public security mobile station registered in the city a linear distance between the information and the location information of the resident building; determining whether there is a target security station in the respective security flow station that has a linear distance from the location information of the resident building that is less than a specified threshold, if present, Sending natural gas leakage warning information to the target security rover through the Internet of Things, the natural gas leakage warning information including location information and building name of the residential building where natural gas leakage occurs;
- the target security rover is configured to output the natural gas leakage alarm information.
- the sending the natural gas leakage warning information to the target security rover through the Internet of Things includes:
- the method further includes:
- the natural gas leakage monitoring platform is configured to register with the city through the Internet of Things when it is determined that there is no target security station in the respective security stations that has a linear distance from the location information of the resident building that is less than a specified threshold.
- Each security mobile station sends the natural gas leakage warning information;
- the respective security flow stations output the natural gas leakage alarm information.
- the natural gas leakage warning information also includes the number of residents entering the interior of the resident building where a natural gas leak occurs.
- the natural gas leak warning information further includes a natural gas leak location inside the resident building where the natural gas leak occurs.
- the embodiment of the invention has the following beneficial effects:
- the location information of each public security mobile station registered in the city and the location of the residential building where the natural gas leakage occurs may be calculated.
- the linear distance between the information, and when it is determined that there is a target security station with a linear distance between the location information of the residential building where the natural gas leakage occurs, which is less than the specified threshold, the transmission to the target security rover through the Internet of Things includes the occurrence of natural gas.
- the location information of the resident building and the natural gas leakage warning information of the building name; the target security rover outputs the natural gas leakage warning information.
- the embodiment of the invention can make the outside world know in time that natural gas leakage occurs inside a residential building to prevent serious safety accidents.
- FIG. 1 is a schematic structural view of a natural gas leakage management system based on a security flow station disclosed in an embodiment of the present invention
- FIG. 2 is a schematic flow chart of a natural gas leakage management method based on a public security rover disclosed in an embodiment of the present invention.
- the embodiment of the invention discloses a natural gas leakage management system and method based on the public security rover, which can enable the outside world to know the natural gas leakage inside a residential building in time to prevent serious safety. All accidental gas leaks prevent major economic losses. The details are described below separately.
- FIG. 1 is a schematic structural diagram of a natural gas leakage management system based on a public security rover disclosed in an embodiment of the present invention.
- the natural gas leakage management system based on the security rover may include:
- the natural gas leakage monitoring platform 101 is configured to acquire the natural gas detection concentration of each of the resident buildings reported by the residential buildings in a certain city through the Internet of Things;
- the natural gas leakage monitoring platform 101 is further configured to determine, for each of the residential buildings, whether a natural gas leakage occurs inside the residential building according to the natural gas detection concentration of the residential building, and if so, calculate each registered city of the city a linear distance between the location information of the security rover and the location information of the resident building; determining whether there is a target security flow in the respective security flow stations that has a linear distance from the location information of the resident building that is less than a specified threshold
- the station 102 if present, transmits natural gas leakage warning information to the target security rover 102 via the Internet of Things, the natural gas leakage warning information including location information and building name of the resident building where a natural gas leak occurs;
- the target security rover 102 is configured to output the natural gas leakage alarm information.
- the sending the natural gas leakage warning information to the target security rover through the Internet of Things includes:
- the natural gas leakage monitoring platform 101 is further configured to: when determining that the target security mobile station 102 has a linear distance between the respective security stations and the location information of the resident building that is less than a specified threshold, Each of the registered security stations of the city sends the natural gas leakage warning information;
- Each of the security traffic stations is configured to output the natural gas leakage alarm information.
- the natural gas leakage warning information further includes the number of residents entering the inside of the resident building where the natural gas leakage occurs.
- the natural gas leakage warning information further includes a natural gas leakage location inside the residential building where the natural gas leakage occurs.
- the natural gas leakage monitoring platform can calculate the location of each public security station registered in the city when a natural gas leakage occurs inside a residential building in a certain city.
- the straight-line distance between the information and the location information of the resident building where the natural gas leak occurred, and when it is determined that there is a target security station with a linear distance between the location information of the resident building where the natural gas leakage occurs is less than a specified threshold.
- the Internet of Things sends to the target security rover a natural gas leakage warning message including the location information of the resident building where the natural gas leak occurred and the building name; the target security rover outputs the natural gas leakage warning information.
- the embodiment of the invention can make the outside world know in time that natural gas leakage occurs inside a residential building to prevent serious safety accidents.
- FIG. 2 is a schematic flow chart of a natural gas leakage management method based on a public security rover disclosed in an embodiment of the present invention.
- the natural gas leakage management method based on the security rover may include:
- the natural gas leakage monitoring platform acquires the natural gas detection concentration of each resident building reported by the residential building in a certain city through the Internet of Things.
- the natural gas leakage monitoring platform determines, for each of the resident buildings, whether a natural gas leakage occurs inside the resident building according to the natural gas detection concentration of the resident building, and if so, calculating the registered public security stations of the city a linear distance between the location information and the location information of the resident building; determining whether there is a target security station in the respective security flow station that has a linear distance from the location information of the resident building that is less than a specified threshold Executing, sending natural gas leakage warning information to the target security rover through the Internet of Things, the natural gas leakage alarm information packet Location information and building names of the residential buildings in which natural gas leaks occurred.
- the target security rover outputs the natural gas leakage alarm information.
- the sending the natural gas leakage warning information to the target security rover through the Internet of Things includes:
- the method further includes:
- the natural gas leakage monitoring platform is configured to register with the city through the Internet of Things when it is determined that there is no target security station in the respective security stations that has a linear distance from the location information of the resident building that is less than a specified threshold.
- Each security mobile station sends the natural gas leakage warning information;
- the respective security flow stations output the natural gas leakage alarm information.
- the natural gas leakage warning information further includes the number of residents entering the resident building by the natural gas leakage.
- the natural gas leakage warning information further includes a natural gas leakage position inside the resident building where the natural gas leakage occurs.
- the natural gas leakage monitoring platform can calculate the location of each security station registered in the city when a natural gas leakage occurs inside a residential building in a certain city.
- the straight-line distance between the information and the location information of the resident building where the natural gas leak occurred, and when it is determined that there is a target security station with a linear distance between the location information of the resident building where the natural gas leakage occurs is less than a specified threshold.
- the Internet of Things sends to the target security rover a natural gas that includes the location information and building name of the residential building where the natural gas leak occurred.
- Leak warning information; the target security rover outputs the natural gas leakage alarm information.
- the embodiment of the invention can make the outside world know in time that natural gas leakage occurs inside a residential building to prevent serious safety accidents.
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Abstract
一种基于治安流动站的天然气泄漏管理系统及方法,其中:天然气泄漏监控平台(101)在某一城市的某一居民建筑内部发生天然气泄漏时,可以计算该城市已登记的每一治安流动站的位置信息与发生天然气泄漏的该居民建筑的位置信息之间的直线距离,并在判断出存在与发生天然气泄漏的该居民建筑的位置信息之间的直线距离小于指定阈值的目标治安流动站(102)时,通过物联网向目标治安流动站(102)发送包括发生天然气泄漏的该居民建筑的位置信息和建筑名称的天然气泄漏告警信息;目标治安流动站(102)输出该天然气泄漏告警信息。该系统可以使外界及时知晓某一个居民建筑内部发生天然气泄漏,防止造成严重的安全事故,防止造成重大经济损失。
Description
本发明涉及物联网技术领域,尤其涉及一种基于治安流动站的天然气泄漏管理系统及方法。
随着城市建设和经济建设的飞速发展、人民生活水平的普遍提高和石油化学工业的发展,特别是西气东输工程投入运行以来,天然气作为优质高效的清洁能源,已逐步成为城镇燃气的主导气源,促进了社会经济的发展,且减少了对环境的污染。在城市中,由于使用天然气的居民建筑越来越多,范围越来越广,一旦居民建筑发生天然气泄漏事故,特别是居民建筑在深夜发生天然气泄漏事故时,往往很容易造成严重的安全事故。
发明内容
本发明实施例公开了一种基于治安流动站的天然气泄漏管理系统及方法,能够使外界及时知晓某一个居民建筑内部发生天然气泄漏,防止造成严重的安全事故。
本发明实施例第一方面公开一种基于治安流动站的天然气泄漏管理系统,包括:
天然气泄漏监控平台,用于获取某一城市已登记的各居民建筑通过物联网上报的所述各居民建筑内部的天然气检测浓度;
所述天然气泄漏监控平台,还用于针对每一所述居民建筑,根据所述居民建筑内部的天然气检测浓度判断所述居民建筑内部是否发生天然气泄漏,如果是,计算所述城市已登记的各个治安流动站的位置信息与所述居民建筑的位置信息之间的直线距离;判断所述各个治安流动站中是否存在与所述居民建筑的
位置信息之间的直线距离小于指定阈值的目标治安流动站,如果存在,通过物联网向所述目标治安流动站发送天然气泄漏告警信息,所述天然气泄漏告警信息包括发生天然气泄漏的所述居民建筑的位置信息和建筑名称;
所述目标治安流动站,用于输出所述天然气泄漏告警信息。
其中,通过物联网向所述目标治安流动站发送天然气泄漏告警信息包括:
调用所述目标治安流动站设置的通讯端口,并判断所述目标治安流动站设置的通讯端口是否设置有告警允许接收时段,如果所述目标治安流动站设置的通讯端口设置有告警允许接收时段,判断当前时间是否位于所述告警允许接收时段内,如果是,通过物联网向所述目标治安流动站发送天然气泄漏告警信息。
作为一种可选的实施方式,在本发明实施例第一方面中:
所述天然气泄漏监控平台,还用于在判断所述各个治安流动站中不存在与所述居民建筑的位置信息之间的直线距离小于指定阈值的目标治安流动站时,通过物联网向所述城市已登记的各个治安流动站发送所述天然气泄漏告警信息;
所述各个治安流动站,用于输出所述天然气泄漏告警信息。
作为一种可选的实施方式,在本发明实施例第一方面中:
所述天然气泄漏告警信息还包括发生天然气泄漏的所述居民建筑内部刷卡进入的居民数量。
作为一种可选的实施方式,在本发明实施例第一方面中:
所述天然气泄漏告警信息还包括所述发生天然气泄漏的所述居民建筑内部的天然气泄漏位置。
本发明实施例第二方面公开了一种基于治安流动站的天然气泄漏管理方法,所述方法包括:
天然气泄漏监控平台获取某一城市已登记的各居民建筑通过物联网上报的所述各居民建筑的天然气检测浓度;
所述天然气泄漏监控平台针对每一所述居民建筑,根据所述居民建筑的天然气检测浓度判断所述居民建筑内部是否发生天然气泄漏,如果是,计算所述城市已登记的各个治安流动站的位置信息与所述居民建筑的位置信息之间的直线距离;判断所述各个治安流动站中是否存在与所述居民建筑的位置信息之间的直线距离小于指定阈值的目标治安流动站,如果存在,通过物联网向所述目标治安流动站发送天然气泄漏告警信息,所述天然气泄漏告警信息包括发生天然气泄漏的所述居民建筑的位置信息和建筑名称;
所述目标治安流动站,用于输出所述天然气泄漏告警信息。
其中,通过物联网向所述目标治安流动站发送天然气泄漏告警信息包括:
调用所述目标治安流动站设置的通讯端口,并判断所述目标治安流动站设置的通讯端口是否设置有告警允许接收时段,如果所述目标治安流动站设置的通讯端口设置有告警允许接收时段,判断当前时间是否位于所述告警允许接收时段内,如果是,通过物联网向所述目标治安流动站发送天然气泄漏告警信息。
作为一种可选的实施方式,在本发明实施例第二方面中,所述方法还包括:
所述天然气泄漏监控平台在判断所述各个治安流动站中不存在与所述居民建筑的位置信息之间的直线距离小于指定阈值的目标治安流动站时,通过物联网向所述城市已登记的各个治安流动站发送所述天然气泄漏告警信息;
所述各个治安流动站输出所述天然气泄漏告警信息。
作为一种可选的实施方式,在本发明实施例第二方面中:
所述天然气泄漏告警信息还包括发生天然气泄漏的所述居民建筑内部刷卡进入的居民数量。
作为一种可选的实施方式,在本发明实施例第二方面中:
所述天然气泄漏告警信息还包括所述发生天然气泄漏的所述居民建筑内部的天然气泄漏位置。
与现有技术相比,本发明实施例具有以下有益效果:
本发明实施例中,天然气泄漏监控平台在某一城市的某一居民建筑内部发生天然气泄漏时,可以计算该城市已登记的每一治安流动站的位置信息与发生天然气泄漏的该居民建筑的位置信息之间的直线距离,并在判断出存在与发生天然气泄漏的该居民建筑的位置信息之间的直线距离小于指定阈值的目标治安流动站时,通过物联网向目标治安流动站发送包括发生天然气泄漏的该居民建筑的位置信息和建筑名称的天然气泄漏告警信息;目标治安流动站输出该天然气泄漏告警信息。本发明实施例可以使外界及时知晓某一个居民建筑内部发生天然气泄漏,防止造成严重的安全事故。
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本发明实施例公开的一种基于治安流动站的天然气泄漏管理系统的结构示意图;
图2是本发明实施例公开的一种基于治安流动站的天然气泄漏管理方法的流程示意图。
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明实施例公开了一种基于治安流动站的天然气泄漏管理系统及方法,能够使外界及时知晓某一个居民建筑内部发生天然气泄漏,防止造成严重的安
全事故气泄漏,防止造成重大经济损失。以下分别进行详细说明。
请参阅图1,图1是本发明实施例公开的一种基于治安流动站的天然气泄漏管理系统的结构示意图。如图1所示,该基于治安流动站的天然气泄漏管理系统可以包括:
天然气泄漏监控平台101,用于获取某一城市已登记的各居民建筑通过物联网上报的所述各居民建筑的天然气检测浓度;
所述天然气泄漏监控平台101,还用于针对每一所述居民建筑,根据所述居民建筑的天然气检测浓度判断所述居民建筑内部是否发生天然气泄漏,如果是,计算所述城市已登记的各个治安流动站的位置信息与所述居民建筑的位置信息之间的直线距离;判断所述各个治安流动站中是否存在与所述居民建筑的位置信息之间的直线距离小于指定阈值的目标治安流动站102,如果存在,通过物联网向所述目标治安流动站102发送天然气泄漏告警信息,所述天然气泄漏告警信息包括发生天然气泄漏的所述居民建筑的位置信息和建筑名称;
所述目标治安流动站102,用于输出所述天然气泄漏告警信息。
其中,通过物联网向所述目标治安流动站发送天然气泄漏告警信息包括:
调用所述目标治安流动站设置的通讯端口,并判断所述目标治安流动站设置的通讯端口是否设置有告警允许接收时段,如果所述目标治安流动站设置的通讯端口设置有告警允许接收时段,判断当前时间是否位于所述告警允许接收时段内,如果是,通过物联网向所述目标治安流动站发送天然气泄漏告警信息。
作为一种可选的实施方式,在图1所示的基于治安流动站的天然气泄漏管理系统中:
所述天然气泄漏监控平台101,还用于在判断所述各个治安流动站中不存在与所述居民建筑的位置信息之间的直线距离小于指定阈值的目标治安流动站102时,通过物联网向所述城市已登记的各个治安流动站发送所述天然气泄漏告警信息;
所述各个治安流动站,用于输出所述天然气泄漏告警信息。
作为一种可选的实施方式,所述天然气泄漏告警信息还包括发生天然气泄漏的所述居民建筑内部刷卡进入的居民数量。
作为一种可选的实施方式,所述天然气泄漏告警信息还包括所述发生天然气泄漏的所述居民建筑内部的天然气泄漏位置。
在图1所示的基于治安流动站的天然气泄漏管理系统中,天然气泄漏监控平台在某一城市的某一居民建筑内部发生天然气泄漏时,可以计算该城市已登记的每一治安流动站的位置信息与发生天然气泄漏的该居民建筑的位置信息之间的直线距离,并在判断出存在与发生天然气泄漏的该居民建筑的位置信息之间的直线距离小于指定阈值的目标治安流动站时,通过物联网向目标治安流动站发送包括发生天然气泄漏的该居民建筑的位置信息和建筑名称的天然气泄漏告警信息;目标治安流动站输出该天然气泄漏告警信息。本发明实施例可以使外界及时知晓某一个居民建筑内部发生天然气泄漏,防止造成严重的安全事故。
请参阅图2,图2是本发明实施例公开的一种基于治安流动站的天然气泄漏管理方法的流程示意图。如图2所示,该基于治安流动站的天然气泄漏管理方法可以包括:
201、天然气泄漏监控平台获取某一城市已登记的各居民建筑通过物联网上报的所述各居民建筑的天然气检测浓度。
202、所述天然气泄漏监控平台针对每一所述居民建筑,根据所述居民建筑的天然气检测浓度判断所述居民建筑内部是否发生天然气泄漏,如果是,计算所述城市已登记的各个治安流动站的位置信息与所述居民建筑的位置信息之间的直线距离;判断所述各个治安流动站中是否存在与所述居民建筑的位置信息之间的直线距离小于指定阈值的目标治安流动站,如果存在,通过物联网向所述目标治安流动站发送天然气泄漏告警信息,所述天然气泄漏告警信息包
括发生天然气泄漏的所述居民建筑的位置信息和建筑名称。
203、所述目标治安流动站输出所述天然气泄漏告警信息。
其中,通过物联网向所述目标治安流动站发送天然气泄漏告警信息包括:
调用所述目标治安流动站设置的通讯端口,并判断所述目标治安流动站设置的通讯端口是否设置有告警允许接收时段,如果所述目标治安流动站设置的通讯端口设置有告警允许接收时段,判断当前时间是否位于所述告警允许接收时段内,如果是,通过物联网向所述目标治安流动站发送天然气泄漏告警信息。
作为一种可选的实施方式,在图2所示的基于治安流动站的天然气泄漏管理方法中,所述方法还包括:
所述天然气泄漏监控平台在判断所述各个治安流动站中不存在与所述居民建筑的位置信息之间的直线距离小于指定阈值的目标治安流动站时,通过物联网向所述城市已登记的各个治安流动站发送所述天然气泄漏告警信息;
所述各个治安流动站输出所述天然气泄漏告警信息。
作为一种可选的实施方式,在图2所示的基于治安流动站的天然气泄漏管理方法中,所述天然气泄漏告警信息还包括发生天然气泄漏的所述居民建筑内部刷卡进入的居民数量。
作为一种可选的实施方式,在图2所示的基于治安流动站的天然气泄漏管理方法中,所述天然气泄漏告警信息还包括所述发生天然气泄漏的所述居民建筑内部的天然气泄漏位置。
在图2所示的基于治安流动站的天然气泄漏管理方法中,天然气泄漏监控平台在某一城市的某一居民建筑内部发生天然气泄漏时,可以计算该城市已登记的每一治安流动站的位置信息与发生天然气泄漏的该居民建筑的位置信息之间的直线距离,并在判断出存在与发生天然气泄漏的该居民建筑的位置信息之间的直线距离小于指定阈值的目标治安流动站时,通过物联网向目标治安流动站发送包括发生天然气泄漏的该居民建筑的位置信息和建筑名称的天然气
泄漏告警信息;目标治安流动站输出该天然气泄漏告警信息。本发明实施例可以使外界及时知晓某一个居民建筑内部发生天然气泄漏,防止造成严重的安全事故。
本领域普通技术人员可以理解上述实施例的各种方法中的全部或部分步骤是可以通过程序来指令相关的硬件来完成,该程序可以存储于一计算机可读存储介质中,存储介质包括只读存储器(Read-Only Memory,ROM)、随机存储器(Random Access Memory,RAM)、可编程只读存储器(Programmable Read-only Memory,PROM)、可擦除可编程只读存储器(Erasable Programmable Read Only Memory,EPROM)、一次可编程只读存储器(One-time Programmable Read-Only Memory,OTPROM)、电子抹除式可复写只读存储器(Electrically-Erasable Programmable Read-Only Memory,EEPROM)、只读光盘(Compact Disc Read-Only Memory,CD-ROM)或其他光盘存储器、磁盘存储器、磁带存储器、或者能够用于携带或存储数据的计算机可读的任何其他介质。
以上对本发明实施例公开的一种基于治安流动站的天然气泄漏管理系统及方法进行了详细介绍,本文中应用了具体个例对本发明的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本发明的方法及其核心思想;同时,对于本领域的一般技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本发明的限制。
Claims (8)
- 一种基于治安流动站的天然气泄漏管理系统,其特征在于,包括:天然气泄漏监控平台,用于获取某一城市已登记的各居民建筑通过物联网上报的所述各居民建筑内部的天然气检测浓度;所述天然气泄漏监控平台,还用于针对每一所述居民建筑,根据所述居民建筑内部的天然气检测浓度判断所述居民建筑内部是否发生天然气泄漏,如果是,计算所述城市已登记的各个治安流动站的位置信息与所述居民建筑的位置信息之间的直线距离;判断所述各个治安流动站中是否存在与所述居民建筑的位置信息之间的直线距离小于指定阈值的目标治安流动站,如果存在,通过物联网向所述目标治安流动站发送天然气泄漏告警信息,所述天然气泄漏告警信息包括发生天然气泄漏的所述居民建筑的位置信息和建筑名称;所述目标治安流动站,用于输出所述天然气泄漏告警信息;其中,通过物联网向所述目标治安流动站发送天然气泄漏告警信息包括:调用所述目标治安流动站设置的通讯端口,并判断所述目标治安流动站设置的通讯端口是否设置有告警允许接收时段,如果所述目标治安流动站设置的通讯端口设置有告警允许接收时段,判断当前时间是否位于所述告警允许接收时段内,如果是,通过物联网向所述目标治安流动站发送天然气泄漏告警信息。
- 根据权利要求1所述的基于治安流动站的天然气泄漏管理系统,其特征在于:所述天然气泄漏监控平台,还用于在判断所述各个治安流动站中不存在与所述居民建筑的位置信息之间的直线距离小于指定阈值的目标治安流动站时,通过物联网向所述城市已登记的各个治安流动站发送所述天然气泄漏告警信息;所述各个治安流动站,用于输出所述天然气泄漏告警信息。
- 根据权利要求1或2所述的基于治安流动站的天然气泄漏管理系统, 其特征在于,所述天然气泄漏告警信息还包括发生天然气泄漏的所述居民建筑内部刷卡进入的居民数量。
- 根据权利要求3所述的基于治安流动站的天然气泄漏管理系统,其特征在于,所述天然气泄漏告警信息还包括所述发生天然气泄漏的所述居民建筑内部的天然气泄漏位置。
- 一种基于治安流动站的天然气泄漏管理方法,其特征在于,所述方法包括:天然气泄漏监控平台获取某一城市已登记的各居民建筑通过物联网上报的所述各居民建筑的天然气检测浓度;所述天然气泄漏监控平台针对每一所述居民建筑,根据所述居民建筑的天然气检测浓度判断所述居民建筑内部是否发生天然气泄漏,如果是,计算所述城市已登记的各个治安流动站的位置信息与所述居民建筑的位置信息之间的直线距离;判断所述各个治安流动站中是否存在与所述居民建筑的位置信息之间的直线距离小于指定阈值的目标治安流动站,如果存在,通过物联网向所述目标治安流动站发送天然气泄漏告警信息,所述天然气泄漏告警信息包括发生天然气泄漏的所述居民建筑的位置信息和建筑名称;所述目标治安流动站,用于输出所述天然气泄漏告警信息;其中,通过物联网向所述目标治安流动站发送天然气泄漏告警信息包括:调用所述目标治安流动站设置的通讯端口,并判断所述目标治安流动站设置的通讯端口是否设置有告警允许接收时段,如果所述目标治安流动站设置的通讯端口设置有告警允许接收时段,判断当前时间是否位于所述告警允许接收时段内,如果是,通过物联网向所述目标治安流动站发送天然气泄漏告警信息。
- 根据权利要求5所述的基于治安流动站的天然气泄漏管理方法,其特征在于,所述方法还包括:所述天然气泄漏监控平台在判断所述各个治安流动站中不存在与所述居 民建筑的位置信息之间的直线距离小于指定阈值的目标治安流动站时,通过物联网向所述城市已登记的各个治安流动站发送所述天然气泄漏告警信息;所述各个治安流动站输出所述天然气泄漏告警信息。
- 根据权利要求5或6所述的基于治安流动站的天然气泄漏管理方法,其特征在于,所述天然气泄漏告警信息还包括发生天然气泄漏的所述居民建筑内部刷卡进入的居民数量。
- 根据权利要求7所述的基于治安流动站的天然气泄漏管理方法,其特征在于,所述天然气泄漏告警信息还包括所述发生天然气泄漏的所述居民建筑内部的天然气泄漏位置。
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