WO2018161343A1 - 城市消防系统的事故定位方法及系统 - Google Patents
城市消防系统的事故定位方法及系统 Download PDFInfo
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- G—PHYSICS
- G08—SIGNALLING
- G08B—SIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
- G08B17/00—Fire alarms; Alarms responsive to explosion
- G08B17/12—Actuation by presence of radiation or particles, e.g. of infrared radiation or of ions
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- the invention relates to the field of fire protection, and in particular to an accident positioning method and system for a city fire protection system.
- Fire protection means eliminating prevention (that is, the general term for preventing and solving people's and natural and accidental disasters encountered in life, work, and learning). Of course, the narrow meaning is in the early days of people's understanding: (fire) . Fire fighting and fire prevention. Also refers to fire fighting and fire prevention personnel. Guo Xiaocheng, “Zhejiang Guangfu Ji”: “The Guards and the patrolmen firefighting, seeing the situation has been fierce, are sleeved with white cloth, to express honesty.” Such as: must do a good job in firefighting. For example: fire trucks, fire fighting technology. China has a history of more than 2,000 years of firefighting.
- the existing urban fire protection system cannot automatically locate the accident, resulting in insufficient timeliness of safety rescue and affecting safety.
- the application provides an accident location method for a city fire protection system. It solves the shortcomings of the prior art technical solutions with low security.
- an accident location method for a city fire protection system comprising the steps of:
- the city fire protection system receives the user's alarm information
- the city fire protection system locates the user and obtains the location information of the user
- the city fire protection system controls the video information of the monitoring device of the location information setting range, and analyzes the video information to determine the location of the fire alarm.
- the analyzing the video information to determine the location of the fire alarm specifically includes:
- the city fire protection system processes the video information to determine whether the video information has image information of smoke or fire image information. If it is determined, the smoke position or the flare position is determined as the location of the fire alarm.
- the city fire protection system processes the video information to determine whether the video information has smoke image information or flare image information, including:
- the city fire protection system captures the video information to obtain the first image, and analyzes the first image to determine a range of the first image in which the smoke smoke gray value or the fire gray value in the first image is larger than the range.
- the range is determined to determine whether the video information has smoked image information or flared image information.
- an accident location system for a city fire protection system comprising:
- a receiving unit configured to receive alarm information of the user
- a positioning unit configured to locate the user, and obtain location information of the user
- the processing unit is configured to control video information of the monitoring device of the location information setting range, and analyze the video information to determine a location of the fire alarm.
- the processing unit is configured to process the video information to determine whether the video information has smoke image information or flare image information, and if yes, determine the smoke position or the flare position as The location of the fire alarm.
- the processing unit is configured to capture the video information to the first image, and analyze the first image to determine that the gray value or the gray value of the smoke in the first image is the first.
- the range of the image if the range is larger than the set range, determines that the video information has image information of smoke or image information of flare.
- a city fire protection system including: a processor, a transceiver, a memory, and a bus, wherein the processor, the transceiver, and the memory are connected by a bus.
- the transceiver is configured to receive alarm information of a user
- the processor is configured to locate the user, obtain location information of the user, control video information of the monitoring device of the location information setting range, and analyze the video information to determine a location of the fire alarm.
- the processor is configured to process the video information to determine whether the video information has smoke image information or flare image information, and if yes, determine the smoke position or the flare position as The location of the fire alarm.
- the processor is configured to capture the video information to the first image, and analyze the first image to determine that the gray value or the gray value of the smoke in the first image is the first.
- the range of the image if the range is larger than the set range, determines that the video information has image information of smoke or image information of flare.
- the technical solution provided by the invention automatically locates the user of the alarm once, and then calls the video data of the security monitoring to perform secondary confirmation, so that it has the advantages of accurate positioning and high security.
- FIG. 1 is a flow chart of an accident location method for a city fire protection system according to a first preferred embodiment of the present invention
- FIG. 2 is a structural diagram of an accident location system of a city fire protection system according to a second preferred embodiment of the present invention.
- FIG. 3 is a hardware structural diagram of a city fire protection system according to a second preferred embodiment of the present invention.
- FIG. 1 is a schematic diagram of an accident location method for a city fire protection system according to a first preferred embodiment of the present invention. The method is as shown in FIG.
- Step S101 The city fire protection system receives the alarm information of the user.
- Step S102 The city fire protection system locates the user, and obtains location information of the user.
- Step S103 The city fire protection system controls video information of the monitoring device of the location information setting range, and analyzes the video information to determine a location of the fire alarm.
- the technical solution provided by the invention automatically locates the user of the alarm once, and then calls the video data of the security monitoring to perform secondary confirmation, so that it has the advantages of accurate positioning and high security.
- the analyzing the video information to determine the location of the fire alarm specifically includes:
- the city fire protection system processes the video information to determine whether the video information has image information of smoke or fire image information. If it is determined, the smoke position or the flare position is determined as the location of the fire alarm.
- the city fire protection system processes the video information to determine whether the video information has smoke image information or flare image information, including:
- the city fire protection system captures the video information to obtain the first image, and analyzes the first image to determine a range of the first image in which the smoke smoke gray value or the fire gray value in the first image is larger than the range.
- the range is determined to determine whether the video information has smoked image information or flared image information.
- FIG. 2 is an accident location system for a city fire protection system according to a second preferred embodiment of the present invention.
- the system is shown in FIG. 2 and includes:
- the receiving unit 201 is configured to receive alarm information of the user.
- the positioning unit 202 is configured to locate the user and obtain location information of the user.
- the processing unit 203 is configured to control video information of the monitoring device of the location information setting range, and analyze the video information to determine a location of the fire alarm.
- the technical solution provided by the invention automatically locates the user of the alarm once, and then calls the video data of the security monitoring to perform secondary confirmation, so that it has the advantages of accurate positioning and high security.
- the processing unit 203 is configured to process the video information to determine whether the video information has smoke image information or flare image information, and if yes, determine the smoke position or the flare position as The location of the fire alarm.
- the processing unit 203 is specifically configured to capture the video information to the first image, and analyze the first image to determine the first image of the thick smoke gray value or the fire gray value in the first image.
- the range if the range is greater than the set range, determines that the video information has image information of smoke or image information of flare.
- FIG. 3 is a city fire protection system 30, including: a processor 301, a transceiver 302, a memory 303, and a bus 304.
- the transceiver 302 is configured to transmit and receive data with and from an external device.
- the number of processors 301 can be one or more.
- processor 301, memory 302, and transceiver 303 may be connected by bus 304 or other means.
- the city fire protection system 30 can be used to perform the steps of FIG. For the meaning and examples of the terms involved in the embodiment, reference may be made to the corresponding embodiment of FIG. 1. I will not repeat them here.
- the transceiver 302 is configured to receive alarm information of the user.
- the program code is stored in the memory 303.
- the processor 901 is configured to call the program code stored in the memory 903 for performing the following operations:
- the processor 301 is configured to locate the user, obtain location information of the user, control video information of the monitoring device of the location information setting range, and analyze the video information to determine a location of the fire alarm.
- the processor 301 herein may be a processing component or a general term of multiple processing components.
- the processing element can be a central processor (Central) Processing Unit, CPU), or a specific integrated circuit (Application Specific Integrated) Circuit, ASIC), or one or more integrated circuits configured to implement embodiments of the present application, such as one or more microprocessors (digital singnal Processor, DSP), or one or more Field Programmable Gate Arrays (FPGAs).
- CPU central processor
- ASIC Application Specific Integrated Circuit
- DSP digital singnal Processor
- FPGAs Field Programmable Gate Arrays
- the memory 303 may be a storage device or a collective name of a plurality of storage elements, and is used to store executable program code or parameters, data, and the like required for the application running device to operate. And the memory 303 may include random access memory (RAM), and may also include non-volatile memory (non-volatile memory) Memory), such as disk storage, flash (Flash), etc.
- RAM random access memory
- non-volatile memory non-volatile memory
- flash flash
- Bus 304 can be an industry standard architecture (Industry Standard Architecture, ISA) bus, Peripheral Component (PCI) bus or extended industry standard architecture (Extended Industry Standard Architecture, EISA) bus, etc.
- the bus can be divided into an address bus, a data bus, a control bus, and the like. For ease of representation, only one thick line is shown in Figure 3, but it does not mean that there is only one bus or one type of bus.
- the terminal may further include input and output means connected to the bus 304 for connection to other parts such as the processor 301 via the bus.
- the input/output device can provide an input interface for the operator, so that the operator can select the control item through the input interface, and can also be other interfaces through which other devices can be externally connected.
- the program may be stored in a computer readable storage medium, and the storage medium may include: Flash drive, read-only memory (English: Read-Only Memory, referred to as: ROM), random accessor (English: Random Access Memory, referred to as: RAM), disk or CD.
- ROM Read-Only Memory
- RAM Random Access Memory
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Abstract
一种城市消防系统的事故定位方法及系统,所述方法包括如下步骤:城市消防系统接收用户的报警信息(101);城市消防系统对该用户进行定位,得到用户的位置信息(102);城市消防系统控制所述位置信息设定范围的监控设备的视频信息,对该视频信息进行分析确定消防报警的位置(103)。技术方案具有安全性高的优点。
Description
本发明涉及消防领域,尤其涉及一种城市消防系统的事故定位方法及系统。
“消防”即消除防患(即预防和解决人们在生活、工作、学习过程中遇到的人为与自然、偶然灾害的总称),当然狭义的意思在人们认识初期是:(扑灭)火灾的意思。灭火与防火。亦指灭火、防火人员。郭孝成《浙江光复记》:“卫队及巡警消防,见势已烈,均袖缀白布,以表输诚。”如:必须抓好消防工作。例如:消防车、消防技术。中国已有两千多年的消防历史,“消防”一词是二十世纪从日本引进的,是一个外来语。但“消防”的根在中国。日本的文字是从中国的汉字演变而来,汉字早在西晋太康五年(284年)就开始传入日本。“消防”一词不仅字形与汉字完全相同,字义也无差别。现代意义的消防可以更深层的理解为消除危险和防止灾难。
现有的城市消防系统无法对事故进行自动定位,导致安全救援的及时性不够,影响安全性。
本申请提供一种城市消防系统的事故定位方法。其解决现有技术的技术方案安全性低的缺点。
一方面,提供一种城市消防系统的事故定位方法,所述方法包括如下步骤:
城市消防系统接收用户的报警信息;
城市消防系统对该用户进行定位,得到用户的位置信息;
城市消防系统控制所述位置信息设定范围的监控设备的视频信息,对该视频信息进行分析确定消防报警的位置。
可选的,所述对该视频信息进行分析确定消防报警的位置具体包括:
城市消防系统对该视频信息进行处理确定该视频信息是否有浓烟的图像信息或火光的图像信息,如确定有,则将该浓烟位置或火光位置确定为消防报警的位置。
可选的,所述城市消防系统对该视频信息进行处理确定该视频信息是否有浓烟的图像信息或火光的图像信息具体,包括:
城市消防系统对该视频信息进行抓取得到第一图像,对第一图像进行分析确定该第一图像中浓烟灰度值或火光灰度值所占第一图像的范围,如该范围大于设定范围,确定该视频信息有浓烟的图像信息或火光的图像信息。
第二方面,提供一种城市消防系统的事故定位系统,所述系统包括:
接收单元,用于接收用户的报警信息;
定位单元,用于对该用户进行定位,得到用户的位置信息;
处理单元,用于控制所述位置信息设定范围的监控设备的视频信息,对该视频信息进行分析确定消防报警的位置。
可选的,所述处理单元,具体用于对该视频信息进行处理确定该视频信息是否有浓烟的图像信息或火光的图像信息,如确定有,则将该浓烟位置或火光位置确定为消防报警的位置。
可选的,所述处理单元,具体用于对该视频信息进行抓取得到第一图像,对第一图像进行分析确定该第一图像中浓烟灰度值或火光灰度值所占第一图像的范围,如该范围大于设定范围,确定该视频信息有浓烟的图像信息或火光的图像信息。
第三方面,提供一种城市消防系统,包括:处理器、收发器、存储器和总线,所述处理器、收发器、存储器通过总线连接,
所述收发器,用于接收用户的报警信息;
所述处理器,用于对该用户进行定位,得到用户的位置信息,控制所述位置信息设定范围的监控设备的视频信息,对该视频信息进行分析确定消防报警的位置。
可选的,所述处理器,具体用于对该视频信息进行处理确定该视频信息是否有浓烟的图像信息或火光的图像信息,如确定有,则将该浓烟位置或火光位置确定为消防报警的位置。
可选的,所述处理器,具体用于对该视频信息进行抓取得到第一图像,对第一图像进行分析确定该第一图像中浓烟灰度值或火光灰度值所占第一图像的范围,如该范围大于设定范围,确定该视频信息有浓烟的图像信息或火光的图像信息。
本发明提供的技术方案自动对报警的用户进行一次定位,然后调用安防监控的视频数据进行二次确认,所以其具有定位准确,安全性高的优点。
为了更清楚地说明本发明实施例的技术方案,下面将对实施例描述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为本发明第一较佳实施方式提供的一种城市消防系统的事故定位方法的流程图;
图2为本发明第二较佳实施方式提供的一种城市消防系统的事故定位系统的结构图。
图3为本发明第二较佳实施方式提供的一种城市消防系统的硬件结构图。
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作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。
请参考图1,图1是本发明第一较佳实施方式提出的一种城市消防系统的事故定位方法,该方法如图1所示,包括如下步骤:
步骤S101、城市消防系统接收用户的报警信息。
步骤S102、城市消防系统对该用户进行定位,得到用户的位置信息。
步骤S103、城市消防系统控制所述位置信息设定范围的监控设备的视频信息,对该视频信息进行分析确定消防报警的位置。
本发明提供的技术方案自动对报警的用户进行一次定位,然后调用安防监控的视频数据进行二次确认,所以其具有定位准确,安全性高的优点。
可选的,所述对该视频信息进行分析确定消防报警的位置具体包括:
城市消防系统对该视频信息进行处理确定该视频信息是否有浓烟的图像信息或火光的图像信息,如确定有,则将该浓烟位置或火光位置确定为消防报警的位置。
可选的,所述城市消防系统对该视频信息进行处理确定该视频信息是否有浓烟的图像信息或火光的图像信息具体,包括:
城市消防系统对该视频信息进行抓取得到第一图像,对第一图像进行分析确定该第一图像中浓烟灰度值或火光灰度值所占第一图像的范围,如该范围大于设定范围,确定该视频信息有浓烟的图像信息或火光的图像信息。
请参考图2,图2是本发明第二较佳实施方式提出的一种城市消防系统的事故定位系统,该系统如图2所示,包括:
接收单元201,用于接收用户的报警信息。
定位单元202,用于对该用户进行定位,得到用户的位置信息。
处理单元203,用于控制所述位置信息设定范围的监控设备的视频信息,对该视频信息进行分析确定消防报警的位置。
本发明提供的技术方案自动对报警的用户进行一次定位,然后调用安防监控的视频数据进行二次确认,所以其具有定位准确,安全性高的优点。
可选的,上述处理单元203,具体用于对该视频信息进行处理确定该视频信息是否有浓烟的图像信息或火光的图像信息,如确定有,则将该浓烟位置或火光位置确定为消防报警的位置。
可选的,上述处理单元203具体用于对该视频信息进行抓取得到第一图像,对第一图像进行分析确定该第一图像中浓烟灰度值或火光灰度值所占第一图像的范围,如该范围大于设定范围,确定该视频信息有浓烟的图像信息或火光的图像信息。
参阅图3,图3为一种城市消防系统30,包括:处理器301、收发器302、存储器303和总线304,收发器302用于与外部设备之间收发数据。处理器301的数量可以是一个或多个。本申请的一些实施例中,处理器301、存储器302和收发器303可通过总线304或其他方式连接。城市消防系统30可以用于执行图1的步骤。关于本实施例涉及的术语的含义以及举例,可以参考图1对应的实施例。此处不再赘述。
收发器302,用于接收用户的报警信息。
其中,存储器303中存储程序代码。处理器901用于调用存储器903中存储的程序代码,用于执行以下操作:
处理器301,用于对该用户进行定位,得到用户的位置信息,控制所述位置信息设定范围的监控设备的视频信息,对该视频信息进行分析确定消防报警的位置。
需要说明的是,这里的处理器301可以是一个处理元件,也可以是多个处理元件的统称。例如,该处理元件可以是中央处理器(Central
Processing Unit,CPU),也可以是特定集成电路(Application Specific Integrated
Circuit,ASIC),或者是被配置成实施本申请实施例的一个或多个集成电路,例如:一个或多个微处理器(digital singnal
processor,DSP),或,一个或者多个现场可编程门阵列(Field Programmable Gate Array, FPGA)。
存储器303可以是一个存储装置,也可以是多个存储元件的统称,且用于存储可执行程序代码或应用程序运行装置运行所需要参数、数据等。且存储器303可以包括随机存储器(RAM),也可以包括非易失性存储器(non-volatile
memory),例如磁盘存储器,闪存(Flash)等。
总线304可以是工业标准体系结构(Industry Standard
Architecture,ISA)总线、外部设备互连(Peripheral Component,PCI)总线或扩展工业标准体系结构(Extended
Industry Standard
Architecture,EISA)总线等。该总线可以分为地址总线、数据总线、控制总线等。为便于表示,图3中仅用一条粗线表示,但并不表示仅有一根总线或一种类型的总线。
该终端还可以包括输入输出装置,连接于总线304,以通过总线与处理器301等其它部分连接。该输入输出装置可以为操作人员提供一输入界面,以便操作人员通过该输入界面选择布控项,还可以是其它接口,可通过该接口外接其它设备。
需要说明的是,对于前述的各个方法实施例,为了简单描述,故将其都表述为一系列的动作组合,但是本领域技术人员应该知悉,本发明并不受所描述的动作顺序的限制,因为依据本发明,某一些步骤可以采用其他顺序或者同时进行。其次,本领域技术人员也应该知悉,说明书中所描述的实施例均属于优选实施例,所涉及的动作和模块并不一定是本发明所必须的。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详细描述的部分,可以参见其他实施例的相关描述。
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,存储介质可以包括:闪存盘、只读存储器(英文:Read-Only
Memory ,简称:ROM)、随机存取器(英文:Random Access Memory,简称:RAM)、磁盘或光盘等。
以上对本发明实施例所提供的内容下载方法及相关设备、系统进行了详细介绍,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 (9)
- 一种城市消防系统的事故定位方法,其特征在于,所述方法包括如下步骤:城市消防系统接收用户的报警信息;城市消防系统对该用户进行定位,得到用户的位置信息;城市消防系统控制所述位置信息设定范围的监控设备的视频信息,对该视频信息进行分析确定消防报警的位置。
- 根据权利要求1所述的方法,其特征在于,所述对该视频信息进行分析确定消防报警的位置具体包括:城市消防系统对该视频信息进行处理确定该视频信息是否有浓烟的图像信息或火光的图像信息,如确定有,则将该浓烟位置或火光位置确定为消防报警的位置。
- 根据权要求1所述的方法,其特征在于,所述城市消防系统对该视频信息进行处理确定该视频信息是否有浓烟的图像信息或火光的图像信息具体,包括:城市消防系统对该视频信息进行抓取得到第一图像,对第一图像进行分析确定该第一图像中浓烟灰度值或火光灰度值所占第一图像的范围,如该范围大于设定范围,确定该视频信息有浓烟的图像信息或火光的图像信息。
- 一种城市消防系统的事故定位系统,其特征在于,所述系统包括:接收单元,用于接收用户的报警信息;定位单元,用于对该用户进行定位,得到用户的位置信息;处理单元,用于控制所述位置信息设定范围的监控设备的视频信息,对该视频信息进行分析确定消防报警的位置。
- 根据权利要求4所述的方法,其特征在于,所述处理单元,具体用于对该视频信息进行处理确定该视频信息是否有浓烟的图像信息或火光的图像信息,如确定有,则将该浓烟位置或火光位置确定为消防报警的位置。
- 根据权利要求4所述的方法,其特征在于,所述处理单元,具体用于对该视频信息进行抓取得到第一图像,对第一图像进行分析确定该第一图像中浓烟灰度值或火光灰度值所占第一图像的范围,如该范围大于设定范围,确定该视频信息有浓烟的图像信息或火光的图像信息。
- 一种城市消防系统,包括:处理器、收发器、存储器和总线,所述处理器、收发器、存储器通过总线连接,其特征在于,所述收发器,用于接收用户的报警信息;所述处理器,用于对该用户进行定位,得到用户的位置信息,控制所述位置信息设定范围的监控设备的视频信息,对该视频信息进行分析确定消防报警的位置。
- 根据权利要求7所述的城市消防系统,其特征在于,所述处理器,具体用于对该视频信息进行处理确定该视频信息是否有浓烟的图像信息或火光的图像信息,如确定有,则将该浓烟位置或火光位置确定为消防报警的位置。
- 根据权利要求7所述的城市消防系统,其特征在于,所述处理器,具体用于对该视频信息进行抓取得到第一图像,对第一图像进行分析确定该第一图像中浓烟灰度值或火光灰度值所占第一图像的范围,如该范围大于设定范围,确定该视频信息有浓烟的图像信息或火光的图像信息。
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| CN106385558A (zh) * | 2016-09-14 | 2017-02-08 | 深圳市泛海三江电子有限公司 | 一种视频监控与消防报警联动方法及系统 |
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| US20130272565A1 (en) * | 2012-04-16 | 2013-10-17 | Avaya Inc. | Agent matching based on video analysis of customer presentation |
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