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CN205810066U - A kind of fire-fighting and rescue system - Google Patents

A kind of fire-fighting and rescue system Download PDF

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CN205810066U
CN205810066U CN201620692186.6U CN201620692186U CN205810066U CN 205810066 U CN205810066 U CN 205810066U CN 201620692186 U CN201620692186 U CN 201620692186U CN 205810066 U CN205810066 U CN 205810066U
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module
positioning
fire
rescue
fighting
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杨德森
杨军平
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Academy of Opto Electronics of CAS
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Abstract

本实用新型提供了一种消防救援系统包括指挥平台和佩戴在消防人员身上的定位呼救器。定位呼救器包括惯性定位模块、有源定位模块和第一发送模块;惯性定位模块,用于采用惯性定位方式,获取当前第一位置信息;有源定位模块,用于采用有源定位的方式,获取当前第二位置信息;第一发送模块,用于将第一位置信息和第二位置信息发送给所述指挥平台;指挥平台,用于根据第一位置信息和第二位置信息计算所述定位呼救器所在的实际位置。本实用新型综合惯性定位模块和有源定位模块的定位结果,并经过算法的约束和修正后,得到精准的位置数据,提高了室内定位在复杂环境下的定位精度。

The utility model provides a fire rescue system which comprises a command platform and a positioning call for help worn by fire fighters. The positioning rescue device includes an inertial positioning module, an active positioning module and a first sending module; the inertial positioning module is used to obtain the current first position information by using the inertial positioning method; the active positioning module is used to adopt the active positioning method, Obtain the current second location information; the first sending module is used to send the first location information and the second location information to the command platform; the command platform is used to calculate the positioning according to the first location information and the second location information The actual location of the rescue device. The utility model integrates the positioning results of the inertial positioning module and the active positioning module, and obtains accurate position data after being constrained and corrected by the algorithm, and improves the positioning accuracy of indoor positioning in complex environments.

Description

一种消防救援系统A fire rescue system

技术领域technical field

本实用新型涉及消防系统领域,具体而言,涉及一种消防救援系统。The utility model relates to the field of fire-fighting systems, in particular to a fire-fighting and rescue system.

背景技术Background technique

随着我国经济的快速发展,火灾诱因也不断增多,火灾事故也变得多样化和复杂化。火灾的发生,不仅造成重大的人员伤亡和经济损失,同时还对社会稳定与和谐造成严重影响。火灾事故的突发性、复杂性、多样性和重大危害性对火灾及时高效救援提出了更高的要求。With the rapid development of my country's economy, fire causes are also increasing, and fire accidents have become diverse and complicated. The occurrence of fire not only causes heavy casualties and economic losses, but also seriously affects social stability and harmony. The suddenness, complexity, diversity and major hazards of fire accidents put forward higher requirements for timely and efficient fire rescue.

在实施火灾救援过程中,面对复杂多变的现场情况,火灾现场的消防指挥员在很短的时间内做出决策,提出一个有效、周密的灭火救援实施方案,并迅速下达作战指令,是非常困难的。如果有一个事先预定好的灭火救援预案作为依据,在结合火场的实际情况,适当的调整和修行,消防指挥员就可以参照修订、调整后的灭火救援预案有条不紊的指挥作战。因此,灭火救援预案作为应对各类突发火灾事故,减少人员伤亡和财产损失的重要对策,成为大限度减少人员伤亡和财产损失的重要保证;极大地提高了灭火救援效率、消防应急指挥处置的能力。传统书面灭火救援预案已经无法满足新时期复杂化和多样化的火灾。In the process of implementing fire rescue, in the face of complex and changeable on-site conditions, the fire commander at the fire site makes decisions in a short period of time, proposes an effective and thorough fire-fighting and rescue implementation plan, and quickly issues operational instructions. very difficult. If there is a pre-determined fire-fighting and rescue plan as a basis, combined with the actual situation of the fire scene, appropriate adjustments and practice, the fire commander can refer to the revised and adjusted fire-fighting and rescue plan to command operations in an orderly manner. Therefore, the fire fighting and rescue plan, as an important countermeasure to deal with all kinds of sudden fire accidents and reduce casualties and property losses, has become an important guarantee to minimize casualties and property losses; ability. Traditional written fire fighting and rescue plans can no longer meet the complex and diverse fires in the new era.

目前,在度消防员进行定位的时候,多采用外部辅助定位的技术,如GPS定位技术,但此种定位方式的定位精度难以符合要求。At present, when firefighters perform positioning, they often use external auxiliary positioning technology, such as GPS positioning technology, but the positioning accuracy of this positioning method is difficult to meet the requirements.

实用新型内容Utility model content

有鉴于此,本实用新型实施例的目的在于提供一种基于多源融合室内定位导航的消防员快速定位救援系统。该系统机动性高、灵活性强,并且能够以三维救援预案的形式为指挥人员提供有效的救援策略。In view of this, the purpose of the embodiments of the present invention is to provide a firefighter rapid positioning and rescue system based on multi-source fusion indoor positioning and navigation. The system is highly maneuverable and flexible, and can provide effective rescue strategies for commanders in the form of three-dimensional rescue plans.

本实用新型实施例提供了一种消防救援系统,包括指挥平台和佩戴在消防人员身上的定位呼救器,所述定位呼救器包括惯性定位模块、有源定位模块和第一发送模块;The embodiment of the utility model provides a fire rescue system, which includes a command platform and a positioning and rescue device worn by firefighters. The positioning and rescue device includes an inertial positioning module, an active positioning module and a first sending module;

所述惯性定位模块,用于采用惯性定位方式,获取当前第一位置信息;The inertial positioning module is used to obtain the current first position information in an inertial positioning manner;

所述有源定位模块,用于采用有源定位的方式,获取当前第二位置信息;The active positioning module is used to obtain the current second position information by means of active positioning;

所述第一发送模块,用于将所述第一位置信息和第二位置信息发送给所述指挥平台;The first sending module is configured to send the first location information and the second location information to the command platform;

所述指挥平台,用于根据所述第一位置信息和第二位置信息计算所述定位呼救器所在的实际位置。The command platform is configured to calculate the actual location of the location caller according to the first location information and the second location information.

优选的,上述消防救援系统,还包括自建三维模型装置,所述自建三维模型装置包括激光扫描模块、数据处理模块、第二发送模块和设置在所述指挥平台中的建模模块;Preferably, the above-mentioned fire rescue system also includes a self-built three-dimensional model device, and the self-built three-dimensional model device includes a laser scanning module, a data processing module, a second sending module and a modeling module arranged in the command platform;

所述激光扫描模块,用于采集建筑的建筑信息,所述建筑信息包括建筑的三维尺寸和纹理;The laser scanning module is used to collect architectural information of the building, and the architectural information includes the three-dimensional size and texture of the building;

所述数据处理模块,用于将所述建筑信息转化为数据信息;The data processing module is used to convert the building information into data information;

所述第二发送模块,用于将所述数据信息发送至所述建模模块;The second sending module is configured to send the data information to the modeling module;

所述建模模块,用于根据所述数据信息建立建筑的实景三维模型。The modeling module is used to establish a real three-dimensional model of the building according to the data information.

优选的,上述消防救援系统,所述惯性定位方式为惯性导航和/或地磁匹配;所述有源定位方式为蓝牙室内定位、UWB室内定位、WIFI室内定位、Zigbee任意一种或多种。Preferably, in the above-mentioned fire rescue system, the inertial positioning method is inertial navigation and/or geomagnetic matching; the active positioning method is any one or more of Bluetooth indoor positioning, UWB indoor positioning, WIFI indoor positioning, and Zigbee.

优选的,上述消防救援系统,所述指挥平台包括预案生成模块;Preferably, in the above-mentioned fire rescue system, the command platform includes a plan generation module;

所述预案生成模块包括调取单元和生成单元;The plan generating module includes a calling unit and a generating unit;

所述调取单元,用于调取所述三维模型;The calling unit is used to call the three-dimensional model;

所述生成单元,用于根据所述三维模型生成三维救援预案The generating unit is configured to generate a three-dimensional rescue plan according to the three-dimensional model

所述三维救援预案包括预案内容、火灾危险目标三维布置图、火灾危险目标消防设施三维分布图、应急救援指挥部成员信息、灭火救援力量三维部署图和人员疏散三维路线图。The three-dimensional rescue plan includes plan content, three-dimensional layout diagram of fire hazard targets, three-dimensional distribution diagram of fire-fighting facilities of fire hazard targets, member information of emergency rescue headquarters, three-dimensional deployment diagram of fire fighting and rescue forces, and three-dimensional road map of personnel evacuation.

优选的,上述消防救援系统,所述定位呼救器还包括蜂鸣器、频闪光源;Preferably, in the above-mentioned fire rescue system, the positioning caller also includes a buzzer and a stroboscopic light source;

所述蜂鸣器,用于发送声音形式的报警信号;The buzzer is used to send an alarm signal in the form of sound;

所述频闪光源,用于发送光形式的报警信号。The stroboscopic light source is used to send an alarm signal in the form of light.

优选的,上述消防救援系统,所述指挥平台还包括预案判断模块;Preferably, in the above-mentioned fire rescue system, the command platform further includes a pre-plan judgment module;

所述预案判断模块包括第一发送单元、检测单元和反馈单元;The plan judgment module includes a first sending unit, a detection unit and a feedback unit;

所述第一发送单元,用于向所述检测单元发送目标建筑的检测信号;The first sending unit is configured to send a detection signal of a target building to the detection unit;

所述检测单元,用于检测目标建筑的三维救援预案在所述指挥平台内的存档情况;The detection unit is used to detect the archival status of the three-dimensional rescue plan of the target building in the command platform;

所述反馈单元,用于当未检测到所述指挥平台内存目标有建筑的三维救援预案时,提示建立三维救援预案指令。The feedback unit is configured to prompt an instruction to establish a three-dimensional rescue plan when no three-dimensional rescue plan for a building is detected in the memory target of the command platform.

优选的,上述消防救援系统,还包括数据传输装置,所述数据传输装置为移动通信网络和局域无线网络中的任意一种。Preferably, the above-mentioned fire rescue system further includes a data transmission device, and the data transmission device is any one of a mobile communication network and a local area wireless network.

优选的,上述消防救援系统,所述定位呼救器还包括主控模块、GNSS多模定位模块、气压计和电源;Preferably, in the above-mentioned fire rescue system, the positioning and rescue device also includes a main control module, a GNSS multi-mode positioning module, a barometer and a power supply;

所述主控模块,用于用于根据所述第一位置信息和第二位置信息计算所述定位呼救器所在的实际位置;The main control module is used to calculate the actual location of the positioning rescue device according to the first location information and the second location information;

所述GNSS多模定位模块,用于输出接收到的卫星定位信号;The GNSS multimode positioning module is used to output the received satellite positioning signal;

所述气压计,用于输出精确的高度信息;The barometer is used to output accurate altitude information;

所述电源,用于为定位呼救器供电。The power supply is used for powering the positioning rescue device.

优选的,上述消防救援系统,所述指挥平台还包括财产评估模块;Preferably, in the above-mentioned fire rescue system, the command platform further includes a property evaluation module;

所述财产评估模块包括第二发送单元、接收单元和评估单元;The property evaluation module includes a second sending unit, a receiving unit and an evaluation unit;

所述第二发送单元,用于向所述自建三维模型装置发送建模信号;The second sending unit is configured to send a modeling signal to the self-built 3D model device;

所述接收单元,用于接收所述自建三维模型装置反馈的灾后建筑的三维模型;The receiving unit is used to receive the three-dimensional model of the post-disaster building fed back by the self-built three-dimensional model device;

所述评估单元,用于根据灾后建筑的三维模型评估财产损失,生成财产损失数据表。The assessment unit is configured to assess property damage according to the three-dimensional model of the post-disaster building, and generate a property loss data table.

优选的,上述消防救援系统,所述指挥平台还包括导入模块,所述导入模块用于导入3DS格式的电子模型。Preferably, in the above-mentioned fire rescue system, the command platform further includes an import module, and the import module is used to import an electronic model in 3DS format.

本实用新型实施例提供的一种消防救援系统,包括指挥平台和佩戴在消防人员身上的定位呼救器。定位呼救器包括惯性定位模块、有源定位模块和第一发送模块。惯性定位模块,用于采用惯性定位方式,获取当前第一位置信息;有源定位模块,用于采用有源定位的方式,获取当前第二位置信息;第一发送模块,将所述第一位置信息和第二位置信息发送给所述指挥平台;指挥平台,用于根据所述第一位置信息和第二位置信息计算所述定位呼救器所在的实际位置。本实用新型综合惯性定位模块和有源定位模块的定位结果,并经过算法的约束和修正后,能够得到精准的位置数据。A fire rescue system provided by an embodiment of the utility model includes a command platform and a positioning caller worn by firefighters. The positioning rescue device includes an inertial positioning module, an active positioning module and a first sending module. The inertial positioning module is used to obtain the current first position information by using the inertial positioning method; the active positioning module is used to obtain the current second position information by using the active positioning method; The information and the second position information are sent to the command platform; the command platform is used to calculate the actual position of the location caller according to the first position information and the second position information. The utility model integrates the positioning results of the inertial positioning module and the active positioning module, and after being constrained and corrected by the algorithm, can obtain accurate position data.

为使本实用新型的上述目的、特征和优点能更明显易懂,下文特举较佳实施例,并配合所附附图,作详细说明如下。In order to make the above-mentioned purpose, features and advantages of the present invention more comprehensible, preferred embodiments are specifically cited below, together with the accompanying drawings, and are described in detail as follows.

附图说明Description of drawings

为了更清楚地说明本实用新型实施例的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,应当理解,以下附图仅示出了本实用新型的某些实施例,因此不应被看作是对范围的限定,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相关的附图。In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following drawings will be briefly introduced in the embodiments. It should be understood that the following drawings only show some embodiments of the present invention. Therefore, it should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can also be obtained according to these drawings without creative work.

图1示出了本实用新型实施例提供一种消防救援系统的一个优选方案的组成示意图;Fig. 1 shows a schematic composition diagram of a preferred solution of a fire rescue system provided by the embodiment of the present invention;

图2示出了本实用新型实施例所提供一种消防救援系统的另一个优选方案的组成示意图。Fig. 2 shows a schematic composition diagram of another preferred solution of a fire rescue system provided by an embodiment of the present invention.

附图中数字代表意义如下:The meanings of the numbers in the attached drawings are as follows:

10-指挥平台10-Command Platform

11-预案生成模块11-plan generation module

12-预案判断模块12- Plan Judgment Module

13-财产评估模块13 - Property Valuation Module

20-定位呼救器20-positioning rescue device

21-惯性定位模块21-Inertial positioning module

22-有源定位模块22-Active positioning module

23-第一发送模块23-The first sending module

30-自建三维模型装置30-Self-built 3D model device

31-激光扫描模块31-Laser scanning module

32-数据处理模块32-Data processing module

33-第二发送模块33-Second sending module

34-建模模块34 - Modeling Module

具体实施方式detailed description

下面将结合本实用新型实施例中附图,对本实用新型实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本实用新型一部分实施例,而不是全部的实施例。通常在此处附图中描述和示出的本实用新型实施例的组件可以以各种不同的配置来布置和设计。因此,以下对在附图中提供的本实用新型的实施例的详细描述并非旨在限制要求保护的本实用新型的范围,而是仅仅表示本实用新型的选定实施例。基于本实用新型的实施例,本领域技术人员在没有做出创造性劳动的前提下所获得的所有其他实施例,都属于本实用新型保护的范围。The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. . The components of the embodiments of the invention generally described and illustrated in the figures herein may be arranged and designed in a variety of different configurations. Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but merely represents selected embodiments of the present invention. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without making creative efforts belong to the scope of protection of the present utility model.

目前,消防员定位方式可以根据是否需要外部设施基础分为无需外部设施辅助的自主定位方式和需要外部设施辅助两种方式。自主定位主要有惯性导航定位,需要外部设施辅助的方式主要是指需要布设定位基站的方式。但受到误差漂移、多径效应、非视距误差等影响,以上两种方式尚没有彻底解决消防员室内定位中存在的位置跳跃、精度差、普适性低的问题。基于此,本实用新型实施例提供的一种消防救援系统。下面通过实施例进行描述。At present, the positioning methods of firefighters can be divided into independent positioning methods without the assistance of external facilities and two methods requiring the assistance of external facilities according to whether external facilities are needed. Autonomous positioning mainly includes inertial navigation positioning, and the method that requires the assistance of external facilities mainly refers to the method that requires the deployment of positioning base stations. However, affected by error drift, multipath effects, and non-line-of-sight errors, the above two methods have not completely solved the problems of position jump, poor accuracy, and low universality in firefighters' indoor positioning. Based on this, the embodiment of the utility model provides a fire rescue system. The following is described by way of examples.

如图1所示,本实用新型实施例提供的一种消防救援系统,包括指挥平台10和佩戴在消防人员身上的定位呼救器20,定位呼救器20包括惯性定位模块21、有源定位模块22和第一发送模块23;As shown in Figure 1, a fire rescue system provided by the embodiment of the present invention includes a command platform 10 and a positioning and rescue device 20 worn by firefighters. The positioning and rescue device 20 includes an inertial positioning module 21 and an active positioning module 22. and the first sending module 23;

惯性定位模块21,用于采用惯性定位方式,获取当前第一位置信息;The inertial positioning module 21 is used to obtain the current first position information by adopting an inertial positioning method;

有源定位模块22,用于采用有源定位的方式,获取当前第二位置信息;The active positioning module 22 is configured to obtain the current second position information by means of active positioning;

第一发送模块23,用于将第一位置信息和第二位置信息发送给指挥平台10;The first sending module 23 is configured to send the first location information and the second location information to the command platform 10;

指挥平台10,用于根据第一位置信息和第二位置信息计算定位呼救器20所在的实际位置。The command platform 10 is configured to calculate the actual location of the emergency rescue device 20 according to the first location information and the second location information.

具体的,消防员在进入火场前,佩戴所述的定位呼救器20。由于每个消防人员有其特有的编号,每个消防人员佩戴的定位呼救器20也有其特有的标识,且该编号和该标识存在一一对应的关系。指挥系统中存有每个编号对应的消防人员的基本信息,便于总指挥现场直观调度和调控。Specifically, the firefighter wears the positioning caller 20 before entering the fire scene. Since each firefighter has its unique number, the location calling device 20 worn by each firefighter also has its unique identification, and there is a one-to-one correspondence between the number and the identification. The basic information of the firefighters corresponding to each number is stored in the command system, which is convenient for the commander-in-chief to intuitively dispatch and control the scene.

定位呼救器20采用惯性定位模块21和有源定位模块22组成的多源融合定位方式。惯性定位模块21能够在没有外部基站辅助的情况下获取定位呼救器20的位置信息,即上述第一位置信息;有源定位模块22能够以基于信号到达时间(TOA)、基于信号到达时间差(TDOA)、信号达到角(DOA)或信号强度(RSSI)的方式进行定位,得到第二位置信息。综合惯性定位模块21和有源定位模块22的定位结果(即第一位置信息和第二位置信息),并经过算法约束和修正后,能够得到精准的位置数据(实际位置数据),该位置数据传送至指挥平台10,指挥平台10根据所述定位呼救器实际位置信息获取消防员位置和状态。The positioning emergency device 20 adopts a multi-source fusion positioning method composed of an inertial positioning module 21 and an active positioning module 22 . The inertial positioning module 21 can obtain the position information of the positioning rescue device 20 without the assistance of an external base station, that is, the above-mentioned first position information; ), signal angle of arrival (DOA) or signal strength (RSSI) to obtain the second location information. By integrating the positioning results of the inertial positioning module 21 and the active positioning module 22 (that is, the first position information and the second position information), and after being constrained and corrected by the algorithm, accurate position data (actual position data) can be obtained. The position data The information is transmitted to the command platform 10, and the command platform 10 obtains the position and status of the firefighters according to the actual position information of the positioning caller.

作为本实用新型实施例的一个优选方案,该消防救援系统还包括自建三维模型装置30,自建三维模型装置30包括激光扫描模块31、数据处理模块32、第二发送模块33和设置在所述指挥平台中的建模模块34;As a preferred solution of this utility model embodiment, the fire rescue system also includes a self-built three-dimensional model device 30, and the self-built three-dimensional model device 30 includes a laser scanning module 31, a data processing module 32, a second sending module 33 and a The modeling module 34 in the command platform;

激光扫描模块31,用于采集建筑的建筑信息,所述建筑信息包括建筑的三维尺寸和纹理;Laser scanning module 31, is used for collecting the building information of building, and described building information comprises the three-dimensional size and texture of building;

数据处理模块32,用于将所述建筑信息转化为数据信息;A data processing module 32, configured to convert the building information into data information;

第二发送模块33,用于将所述数据信息发送至所述建模模块34;A second sending module 33, configured to send the data information to the modeling module 34;

建模模块34,用于根据所述数据信息建立建筑的实景三维模型。The modeling module 34 is configured to establish a real three-dimensional model of the building according to the data information.

具体的,激光扫描模块31包括地面三维激光扫描仪,地面三维激光扫描仪可以实现大尺度、高精度的建筑物三维数据采集、处理工作,内置数码相机,可同时获取真彩色影像数据。利用该地面三维激光扫描仪,在消防重点单位,我们可以根据现场情况,快速制定出扫描建模规划。上述数据处理模块32为一个数据处理工作站,该数据处理工作站要处理大批量的点云数据,因此对数据处理工作站的计算机配置要求较高。在三维激光扫描仪完成数据采集之后,我们把主控工作台计算机存储的数据文件传送到数据处理工作站的计算机上,用配套的数据处理软件对扫描到的点云数据和影像数据进行实时处理与分析,建立实景三维模型。Specifically, the laser scanning module 31 includes a terrestrial 3D laser scanner, which can realize large-scale, high-precision 3D data collection and processing of buildings, and a built-in digital camera that can simultaneously acquire true-color image data. Using the ground 3D laser scanner, in key firefighting units, we can quickly formulate scanning modeling plans according to the site conditions. The above-mentioned data processing module 32 is a data processing workstation, and the data processing workstation needs to process a large amount of point cloud data, so the computer configuration requirements for the data processing workstation are relatively high. After the 3D laser scanner completes the data acquisition, we transfer the data files stored in the computer of the main control workbench to the computer of the data processing workstation, and use the supporting data processing software to process and analyze the scanned point cloud data and image data in real time. Analyze and build a 3D model of the real scene.

作为本实用新型实施例的一个优选方案,上述惯性定位方式为惯性导航和地磁匹配中的任意一种,但不仅仅限于惯性导航和地磁匹配中的任意一种,还可以是惯性导航和地磁匹配二者的组合方式;有源定位方式为蓝牙室内定位、UWB室内定位、WIFI室内定位和Zigbee的任意一种或多种。As a preferred solution of the embodiment of the present invention, the above-mentioned inertial positioning method is any one of inertial navigation and geomagnetic matching, but not limited to any one of inertial navigation and geomagnetic matching, it can also be inertial navigation and geomagnetic matching The combination of the two; the active positioning method is any one or more of Bluetooth indoor positioning, UWB indoor positioning, WIFI indoor positioning and Zigbee.

作为本实用新型实施例的一个优选方案,该消防救援系统中的指挥平台10包括预案生成模块11;As a preferred solution of the embodiment of the present invention, the command platform 10 in the fire rescue system includes a plan generation module 11;

预案生成模块11包括调取单元和生成单元;The plan generating module 11 includes a calling unit and a generating unit;

调取单元,用于调取所述三维模型;a retrieval unit, configured to retrieve the three-dimensional model;

生成单元,用于根据所述三维模型生成三维救援预案;A generating unit, configured to generate a three-dimensional rescue plan according to the three-dimensional model;

三维救援预案包括预案内容、火灾危险目标三维布置图、火灾危险目标消防设施三维分布图、应急救援指挥部成员信息、灭火救援力量三维部署图和人员疏散三维路线图。The three-dimensional rescue plan includes the content of the plan, the three-dimensional layout map of fire hazard targets, the three-dimensional distribution map of fire-fighting facilities for fire hazard targets, the member information of the emergency rescue headquarters, the three-dimensional deployment map of fire fighting and rescue forces, and the three-dimensional road map for personnel evacuation.

本优选方案结合了前述优选方案,调取单元调取三维模型后,根据书面灭火救援预案的要求,将火灾危险目标、消防设施添加到三维模型中,以获得电子形式的三维救援预案。This optimal solution combines the aforementioned preferred solutions. After the retrieval unit retrieves the 3D model, according to the requirements of the written fire-fighting and rescue plan, add fire hazard targets and fire-fighting facilities to the 3D model to obtain an electronic 3D rescue plan.

具体的,上述三维救援预案可以在显示终端对建筑三维模型实现缩放、平移、旋转定位功能,从而达到对建筑不同部分(外墙、内部结构、通道、设备等)可视化漫游浏览。此处,显示终端可以设置在指挥平台10中。通过该三维救援预案,再通过每位消防员佩戴的定位呼救器20发送过来的消防员位置和状态,能第一时间查看人员在楼宇内部分布,同时还可准确能查看楼宇内部的应急设备分布,每个设备的基本信息及状态信息等,便于指挥救援人员在救援过程中及时启用。三维救援预案也将实现人员疏散路线的动画呈现。应当注意,上述三维救援预案不仅仅包括预案内容、火灾危险目标三维布置图、火灾危险目标消防设施三维分布图、应急救援指挥部成员信息、灭火救援力量三维部署图和人员疏散三维路线图等内容,还可以根据需要添加单位基本概况、应急救援指挥部成员政府有关部门。联系电话、参与救援单位有关人员通信联络表等。Specifically, the above-mentioned 3D rescue plan can implement zooming, translation, and rotation positioning functions on the 3D model of the building on the display terminal, so as to achieve visual roaming browsing of different parts of the building (external walls, internal structures, passages, equipment, etc.). Here, the display terminal can be set in the command platform 10 . Through the three-dimensional rescue plan, and the position and status of the firefighters sent by the positioning call device 20 worn by each firefighter, the distribution of personnel in the building can be checked at the first time, and the distribution of emergency equipment inside the building can also be accurately checked , the basic information and status information of each device, etc., which is convenient for commanding rescuers to activate in time during the rescue process. The three-dimensional rescue plan will also realize the animation presentation of personnel evacuation routes. It should be noted that the above three-dimensional rescue plan not only includes the content of the plan, the three-dimensional layout map of fire hazard targets, the three-dimensional distribution map of fire-fighting facilities for fire hazard targets, the information of members of the emergency rescue headquarters, the three-dimensional deployment map of fire fighting and rescue forces, and the three-dimensional route map of personnel evacuation, etc. , you can also add the basic profile of the unit, the members of the emergency rescue headquarters and the relevant government departments as needed. Contact phone numbers, communication and contact forms for relevant personnel of participating rescue units, etc.

作为本实用新型实施例的一个优选方案,指挥平台10还包括预案判断模块12;As a preferred solution of the embodiment of the present invention, the command platform 10 also includes a pre-plan judgment module 12;

预案判断模块12包括第一发送单元、检测单元和反馈单元;The plan judgment module 12 includes a first sending unit, a detection unit and a feedback unit;

第一发送单元,用于向所述检测单元发送目标建筑的检测信号;a first sending unit, configured to send a detection signal of a target building to the detection unit;

检测单元,用于检测目标建筑的三维救援预案在所述指挥平台10内的存档情况;The detection unit is used to detect the archive situation of the three-dimensional rescue plan of the target building in the command platform 10;

反馈单元,用于当未检测到所述指挥平台10内存目标有建筑的三维救援预案时,提示建立三维救援预案指令。The feedback unit is configured to prompt an instruction to establish a three-dimensional rescue plan when no three-dimensional rescue plan for a building is detected in the memory target of the command platform 10 .

本优选方案中,指挥平台10能够通过预案判断模块12判断是否存在三维救援预案的情况下选择工作模式。预案判断模块12中的第一发送单元向检测单元发送目标建筑的检测信号,检测单元接收到该检测信号后,开始在服务器中进行搜索,当未检测到指挥平台10内存有目标建筑的三维救援预案时,提示建立三维救援预案指令。In this preferred solution, the command platform 10 can select a working mode when judging whether there is a three-dimensional rescue plan through the plan judging module 12 . The first sending unit in the pre-plan judgment module 12 sends the detection signal of the target building to the detection unit. After the detection unit receives the detection signal, it starts to search in the server. In the pre-plan, prompt to create a 3D rescue pre-plan command.

三维救援预案是对传统书面消防预案的升级,能够以电脑图文形式直观呈现消防预案。通过三维救援预案,可以分析出火灾隐患易发点,根据周围的环境地理位置,筛选附近可用的救火灭火资源以利用,预先制定好火灾救援方案并备案。做到未雨绸缪,防患于未然。消防三维电子预案使消防预案跳出利用率低、可操作性差的资源浪费现状。The three-dimensional rescue plan is an upgrade of the traditional written fire plan, which can be presented visually in the form of computer graphics. Through the three-dimensional rescue plan, it is possible to analyze the potential fire hazards, and according to the surrounding environment and geographical location, screen the available fire fighting resources nearby for use, and formulate a fire rescue plan in advance and file it. To plan ahead and prevent problems before they happen. The three-dimensional electronic plan for fire protection makes the fire plan jump out of the resource waste status of low utilization rate and poor operability.

结合前述所有优选方案,本实用新型实施例提供了另一个优选方案,前述指挥平台10还包括财产评估模块13,具体结构示意图如图2所示;Combining all the above-mentioned preferred solutions, the embodiment of the present invention provides another preferred solution, the aforementioned command platform 10 also includes a property evaluation module 13, the specific structural diagram is shown in Figure 2;

财产评估模块13包括第二发送单元、接收单元和评估单元;The property evaluation module 13 includes a second sending unit, a receiving unit and an evaluation unit;

第二发送单元,用于向自建三维模型装置30发送建模信号;The second sending unit is used to send the modeling signal to the self-built three-dimensional model device 30;

接收单元,用于接收自建三维模型装置反馈的灾后建筑的三维模型;The receiving unit is used to receive the three-dimensional model of the post-disaster building fed back by the self-built three-dimensional model device;

评估单元,用于根据灾后建筑的三维模型评估财产损失,生成财产损失数据表。The assessment unit is used for assessing property damage according to the three-dimensional model of the post-disaster building, and generating a property loss data table.

财产评估模块13能够在火灾之后通过向自建三维模型装置30发送建模信号,以使得自建三维模型装置30对厂区进行三维建模,生成灾后建筑的三维模型,与灾前的三维模型进行对比,主要是对比地物、设备、机器的变化,对火灾的财产损失第一时间评估,生成财产损失数据表,上报有关部门。The property evaluation module 13 can send a modeling signal to the self-built three-dimensional model device 30 after the fire, so that the self-built three-dimensional model device 30 performs three-dimensional modeling on the factory area, generates a three-dimensional model of the building after the disaster, and compares it with the three-dimensional model before the disaster. The comparison is mainly to compare the changes of ground objects, equipment, and machines, evaluate the property loss of the fire in the first place, generate a property loss data table, and report it to the relevant departments.

需要强调的是,上述自建三维模型装置主要是对消防重点单位进行灾前的建模,以使得该消防重点单位在受灾前就已经生成三维救援预案。对于未事先建立三维救援预案的区域,可在现场根据已经掌握的基本情况,人工自建三维模型。基于现场所建立的自建三维模型,指挥人员可以判断消防员在建筑内的概略位置,在信息沟通方面不受影响。What needs to be emphasized is that the self-built 3D model device mentioned above is mainly for pre-disaster modeling of key firefighting units, so that the key firefighting units have already generated a 3D rescue plan before the disaster. For areas where a 3D rescue plan has not been established in advance, a 3D model can be manually built on site based on the basic conditions already mastered. Based on the self-built 3D model established on site, the commanders can judge the approximate location of the firefighters in the building, and the information communication will not be affected.

作为本实用新型实施例的一个优选方案,该消防救援系统还包括数据传输装置,数据传输装置为移动通信网络和局域无线网络中的任意一种。As a preferred solution of the embodiment of the utility model, the fire rescue system further includes a data transmission device, and the data transmission device is any one of a mobile communication network and a local area wireless network.

作为本实用新型实施例的一个优选方案,定位呼救器20还包括蜂鸣器、频闪光源;As a preferred solution of the embodiment of the present utility model, the location calling device 20 also includes a buzzer and a strobe light source;

蜂鸣器,用于发送声音形式的报警信号;A buzzer for sending an alarm signal in the form of sound;

频闪光源,用于发送光形式的报警信号。Strobe light source for signaling an alarm in the form of light.

包括蜂鸣器和频闪光源的定位呼救器20具备报警功能,在紧急情况下,蜂鸣器和频闪光源可以发出声光报警和远程报警等多种形式报警。报警方式分为手动报警和自动报警两种。在手动报警模式中,一旦消防员按下报警按钮,定位呼救器20中的蜂鸣器立即发出声音形式的报警信号,定位呼救器20中的频闪光源发出光形式的报警信号。同时,定位呼救器20通过数据传输装置向指挥平台10发送报警信息。在自动报警模式下,定位呼救器20可以根据消防员的静止时间长短判断其是否遇险,当静止时间超过15s不超过30s时,定位呼救器20中的蜂鸣器立即发出声音形式的报警信号,定位呼救器20中的频闪光源发出光形式的报警信号,在预报警15s内位置发生变动,则预报警解除,当静止时间超过30s时,定位呼救器20发出强声光报警,同时向指挥平台10发出报警信息。The location calling device 20 comprising a buzzer and a strobe light source has an alarm function, and in an emergency, the buzzer and a strobe light source can send multiple forms of alarms such as sound and light alarms and remote alarms. There are two types of alarm modes: manual alarm and automatic alarm. In the manual alarm mode, once the firefighter presses the alarm button, the buzzer in the positioning emergency device 20 immediately sends an alarm signal in the form of sound, and the strobe light source in the positioning emergency device 20 sends an alarm signal in the form of light. At the same time, the location caller 20 sends an alarm message to the command platform 10 through the data transmission device. In the automatic alarm mode, the location calling device 20 can judge whether the firefighter is in distress according to the length of the still time. When the time of stopping exceeds 15s and does not exceed 30s, the buzzer in the location calling device 20 immediately sends out an alarm signal in the form of sound. The stroboscopic light source in the positioning rescue device 20 sends out an alarm signal in the form of light. If the position changes within 15s of the pre-alarm, the pre-alarm is released. Platform 10 sends alarm information.

作为本实用新型实施例的一个优选方案,定位呼救器20还包括主控模块、GNSS多模定位模块、气压计和电源。As a preferred solution of the embodiment of the present utility model, the positioning and rescue device 20 also includes a main control module, a GNSS multi-mode positioning module, a barometer and a power supply.

主控模块,用于根据第一位置信息和第二位置信息计算定位呼救器20所在的实际位置;The main control module is used to calculate and locate the actual location of the emergency rescue device 20 according to the first location information and the second location information;

GNSS多模定位模块,用于输出接收到的卫星定位信号;The GNSS multi-mode positioning module is used to output the received satellite positioning signal;

气压计,用于输出精确的高度信息;Barometer, for outputting precise altitude information;

电源,用于为定位呼救器供电。The power supply is used to supply power to the positioning rescue device.

具体的,定位呼救器20中的主控模块,能够根据第一位置信息和第二位置信息计算所述定位呼救器所在的实际位置,此时,定位呼救器20中的第一发送模块23用于将实际位置信息发送给指挥平台10,而不是将第一位置信息和第二位置信息发送给指挥平台10。利用该种方式进行定位呼救器20的定位可事先在指挥平台10中进行选择。Specifically, the main control module in the location caller 20 can calculate the actual location of the location caller 20 according to the first position information and the second location information. At this time, the first sending module 23 in the location caller 20 uses Instead of sending the first location information and the second location information to the command platform 10, the actual location information is sent to the command platform 10. Using this method to locate the location of the rescue device 20 can be selected in the command platform 10 in advance.

作为本实用新型实施例的一个优选方案,指挥平台10还包括导入模块,导入模块优选导入3DS格式的电子模型,但不仅仅限于3DS格式的电子模型,还可以是其他标准格式的电子模型,如obj,max,ma,vtk,mb,stl,igs,stp。As a preferred solution of the embodiment of the present utility model, the command platform 10 also includes an import module, and the import module preferably imports an electronic model in 3DS format, but is not limited to an electronic model in 3DS format, and can also be an electronic model in other standard formats, such as obj, max, ma, vtk, mb, stl, igs, stp.

以上所述,仅为本实用新型的具体实施方式,但本实用新型的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本实用新型揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本实用新型的保护范围之内。因此,本实用新型的保护范围应所述以权利要求的保护范围为准。The above is only a specific embodiment of the present utility model, but the scope of protection of the present utility model is not limited thereto. Anyone familiar with the technical field can easily think of changes or changes within the technical scope disclosed by the utility model Replacement should be covered within the protection scope of the present utility model. Therefore, the protection scope of the present utility model should be based on the protection scope of the claims.

Claims (10)

1. a fire-fighting and rescue system, it is characterised in that include maneuvering platform and be worn on the positioning emergency with fire fighter Device, described positioning emergency device includes inertial positioning module, active location module and the first sending module;
Described inertial positioning module, is used for using inertial positioning mode, obtains current primary importance information;
Described active location module, for using the mode of active location, obtains current second position information;
Described first sending module, for being sent to described maneuvering platform by described primary importance information and second position information;
Described maneuvering platform, for calculating described positioning emergency device place according to described primary importance information and second position information Physical location.
A kind of fire-fighting and rescue system the most according to claim 1, it is characterised in that also include self-built threedimensional model device, Described self-built threedimensional model device includes laser scanning module, data processing module, the second sending module and is arranged on described finger Wave the MBM in platform;
Described laser scanning module, for gathering the architecture information of building, described architecture information include building three-dimensional dimension and Texture;
Described data processing module, for being converted into data message by described architecture information;
Described second sending module, for sending described data message to described MBM;
Described MBM, for setting up the outdoor scene threedimensional model of building according to described data message.
A kind of fire-fighting and rescue system the most according to claim 2, it is characterised in that described inertial positioning mode is that inertia is led Boat and/or geomagnetic matching;Described active location mode be bluetooth indoor positioning, UWB indoor positioning, WIFI indoor positioning, Zigbee any one or more.
A kind of fire-fighting and rescue system the most according to claim 2, it is characterised in that described maneuvering platform includes scheme forming Module;
Described scheme forming module includes transferring unit and signal generating unit;
Described transfer unit, be used for transferring described threedimensional model;
Described signal generating unit, for generating three-dimensional Rescue Plan according to described threedimensional model;
Described three-dimensional Rescue Plan includes prediction scheme content, fire hazard target three dimensional arrangement figure, fire hazard target fire fighting device Three-dimensional distribution map, emergency management and rescue headquarter information about firms, analysis on fire cover three-dimensional deployment diagram and evacuating personnel three dimension pathline figure.
A kind of fire-fighting and rescue system the most according to claim 4, it is characterised in that described positioning emergency device also includes buzzing Device, stroboscopic light source;
Described buzzer, for sending the alarm signal of form of sound;
Described stroboscopic light source, for sending the alarm signal of light form.
A kind of fire-fighting and rescue system the most according to claim 5, it is characterised in that described maneuvering platform also includes that prediction scheme is sentenced Disconnected module;
Described prediction scheme judge module includes the first transmitting element, detector unit and feedback unit;
Described first transmitting element, for sending the detection signal of target structures to described detector unit;
Described detector unit, is used for the three-dimensional Rescue Plan detecting target structures archive situation in described maneuvering platform;
Described feedback unit, for when being not detected by the three-dimensional Rescue Plan that described maneuvering platform internal memory target has building, carries Show foundation three-dimensional Rescue Plan instruction.
7. according to a kind of fire-fighting and rescue system described in claim 6, it is characterised in that also include data transmission device, described number It is any one in mobile communications network and local area wireless network according to transmitting device.
A kind of fire-fighting and rescue system the most according to claim 1, it is characterised in that described positioning emergency device also includes master control Module, GNSS multimode locating module, barometer and power supply;
Described main control module, for calculating described positioning emergency device place according to described primary importance information and second position information Physical location;
Described GNSS multimode locating module, the satellite positioning signal received for output;
Described barometer, is used for exporting accurate elevation information;
Described power supply, for powering for positioning emergency device.
A kind of fire-fighting and rescue system the most according to claim 2, it is characterised in that described maneuvering platform also includes that property is commented Estimate module;
Described property evaluation module includes the second transmitting element, receives unit and assessment unit;
Described second transmitting element, for sending modeling signal to described self-built threedimensional model device;
Described reception unit, the threedimensional model of building after the calamity receiving described self-built threedimensional model device feedback;
Described assessment unit, for according to the threedimensional model assessment property loss of building after calamity, generating property loss tables of data.
A kind of fire-fighting and rescue system the most according to claim 9, it is characterised in that described maneuvering platform also includes importing Module, described importing module is for importing the electronic model of 3DS form.
CN201620692186.6U 2016-07-01 2016-07-01 A kind of fire-fighting and rescue system Withdrawn - After Issue CN205810066U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105976563A (en) * 2016-07-01 2016-09-28 青岛市光电工程技术研究院 Fire rescue system
CN110874958A (en) * 2018-09-03 2020-03-10 中国石油化工股份有限公司 Emergency drilling system and method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105976563A (en) * 2016-07-01 2016-09-28 青岛市光电工程技术研究院 Fire rescue system
CN110874958A (en) * 2018-09-03 2020-03-10 中国石油化工股份有限公司 Emergency drilling system and method

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