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TWI774404B - Fire escape guidance and search and rescue assistance system, and information application method based on improving fire survival rate - Google Patents

Fire escape guidance and search and rescue assistance system, and information application method based on improving fire survival rate Download PDF

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TWI774404B
TWI774404B TW110119924A TW110119924A TWI774404B TW I774404 B TWI774404 B TW I774404B TW 110119924 A TW110119924 A TW 110119924A TW 110119924 A TW110119924 A TW 110119924A TW I774404 B TWI774404 B TW I774404B
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fire
guidance
mobile device
signal
portable mobile
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TW202248970A (en
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陳富貴
林信標
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國立臺北科技大學
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Abstract

本發明係關於一種火場逃生導引及搜救輔助系統,包括可定址煙 霧偵測裝置、受信總機以及雲端伺服主機;該些可定址煙霧偵測裝置分別安設於一建築物中的多個監測點以發送偵測數據、指定位址以及用戶位置信號之環境狀態訊號;受信總機用以接收來環境狀態訊號並轉換成異常警報信號;雲端伺服主機用以接收異常警報信號且包含地理圖資、導引規劃單元和路徑產生單元;導引規劃單元用以根據一火災事故現場的即時狀況產生一即時導引資訊;路徑產生單元用以根據最新產生之即時導引資訊以及用戶位置產生最佳化逃生路徑;其中雲端伺服主機根據用戶位置發送路徑導引資訊至可攜式行動裝置,該路徑導引資訊至少包含有該最佳化逃生路徑中至少一部分鄰近該可攜式行動裝置的路線,而該即時導引資訊可根據來自可攜式行動裝置的無線通訊範圍信號進行修正更新,再由路徑產生單元產生更新後之最佳化逃生路徑並回傳至可攜式行動裝置。藉此,引導建築物內的人員可快速逃離建築物,以提升火災現場的人員存活率。 The invention relates to a fire escape guidance and search and rescue assistance system, including addressable smoke A fog detection device, a trusted switchboard and a cloud server host; the addressable smoke detection devices are respectively installed at a plurality of monitoring points in a building to send detection data, designated addresses and environmental status signals of user location signals ; The trusted switchboard is used to receive the environmental status signal and convert it into an abnormal alarm signal; the cloud server host is used to receive the abnormal alarm signal and includes geographic map data, a guidance planning unit and a path generation unit; the guidance planning unit is used to respond to a fire The real-time situation of the accident scene generates a real-time guidance information; the route generation unit is used to generate an optimized escape route according to the latest generated real-time guidance information and the user's position; wherein the cloud server sends the route guidance information to the portable computer according to the user's position. mobile device, the route guidance information at least includes at least a part of the route of the optimized escape route adjacent to the portable mobile device, and the real-time guidance information can be based on the wireless communication range signal from the portable mobile device Correction and update are performed, and the updated optimized escape route is generated by the route generating unit and sent back to the portable mobile device. In this way, people in the building can be guided to escape the building quickly, so as to improve the survival rate of people at the fire scene.

Description

火場逃生導引及搜救輔助系統、以及基於提高火場 存活率的資訊應用方法 Fire escape guidance and search and rescue assistance systems, as well as Survival Information Application Methods

本發明係關於一種火災現場的逃生/救援設備技術領域,特別指一種應用於社區大樓、商場/賣場、展覽館等建築的煙霧偵測裝置、火場逃生導引系統、火場搜救輔助系統、提高火場存活率的優化方法。 The invention relates to the technical field of escape/rescue equipment at a fire scene, in particular to a smoke detection device, a fire escape guidance system, a fire search and rescue assistance system, and a Optimization method to improve survival rate in fire scene.

於日常生活中,各種災害不斷發生,當中又以火災發生頻率最高。當面對火災現場時,一般民眾通常束手無策,僅能倚靠消防救災人員的救援,火災可怕的地方是常常發生於三更半夜或是無人的地方,星星之火若無及早發現一旦蔓延開來常常會成為大火,造成重大的傷亡。時有耳聞在火警初期因不慎操作滅火裝置導致火勢蔓延開來或者在無人的地方發生不可挽救的大火,其實這些都可以用科技的力量來降低及避免災害的發生,如早年海山煤礦的安全人員發現失火時,因為不會操作滅火器而將滅火器往火堆丟入,結果造成不可彌補的重大傷亡。而台中ALA夜店當火災發生時找不到滅火器和不懂使用滅火器,也造成數人死亡,多人受傷之慘劇。所以在台北捷運公司之各捷運站內宣導的救火準則是滅火、通報逃離,以滅火為最優先。隨著現今社會越來越注重公共安全的趨勢下,人們對於災害的預防亦更趨重視,除了建築物的防災設計及防火耐震建材的使用之外,建築物內的逃生避難指示標誌也是不可或缺的設備之一。 In daily life, various disasters occur constantly, and among them, fires are the most frequent. When faced with a fire scene, the general public is usually helpless and can only rely on the rescue of fire and rescue personnel. The most terrible place for fire is often in the middle of the night or in a place with no one. If the fire is not detected early, it will often spread. It will become a fire and cause heavy casualties. It is often heard that in the early stage of a fire, due to the careless operation of the fire extinguishing device, the fire spreads or an irreversible fire occurs in an unmanned place. In fact, these can be reduced and avoided by the power of technology, such as the safety of the Haishan Coal Mine in the early years. When the personnel discovered the fire, they threw the fire extinguisher into the fire because they could not operate the fire extinguisher, resulting in irreparable heavy casualties. In the Taichung ALA nightclub, when the fire broke out, the fire extinguisher could not be found and the fire extinguisher did not know how to use it, which also caused several deaths and many injuries. Therefore, the fire-fighting principles promoted in the MRT stations of the Taipei MRT Corporation are to put out the fire, notify the escape, and put the fire-fighting as the first priority. With the trend of more and more emphasis on public safety in today's society, people pay more attention to disaster prevention. In addition to the disaster prevention design of buildings and the use of fire and earthquake resistant building materials, the evacuation and evacuation signs in buildings are also inaccessible. One of the missing equipment.

消防法規中明文規定,於公共場所或住家等建築物的室內空間轉角處、樓梯、出入口、安全門、逃生門或是逃生動線上,需設置逃生指示燈,如:方向指示燈、樓層指示燈、出入口標示燈等逃生避難指示標誌,以於發生火災或其它意外時,指引人員逃生方向及指示出口,而可迅速撤離災害現場。然而,現今的逃生指示燈僅單純提供照明的提醒作用,並非所有人都了解逃生路線及災害狀況,且在平常的狀況和危急的狀況都顯示相同的狀態指示,不易讓人發現危機的發生,再者,當火災發生之時,室內的能見度低,無法清楚的知道逃生方向或所在位置,且濃煙瀰漫,不僅呼吸困難,連眼睛都睜不開,使得人員需閉著眼睛逃生,在這種情況下,在這種情況下,逃生人員沒有辦法看清楚“逃生指示燈”所指示的逃生方向,往往逃生不及而被困在裡面。再者,在大型住宅或商場內,由於住戶/人員比較密集,逃生住戶/人員會根據疏散指示燈蜂擁於一處,這樣非常容易造成踩踏事故;同時,火災現場的情況瞬息萬變,有時會在疏散通道內發生火災,這樣疏散指示很可能將人員引導至一條危險的逃生道路上,由此可知,現行火災發生時的警示相關設備所發揮之功效實在有限。 Fire regulations expressly stipulate that at the corners of indoor spaces, stairs, entrances and exits, security doors, escape doors or escape lines of buildings such as public places or homes, it is necessary to set up escape indicators, such as: direction indicators, floor indicators, Escape and evacuation indicators such as entrance and exit lights are used to guide personnel to escape directions and indicate exits in the event of fire or other accidents, so that they can quickly evacuate from the disaster site. However, today's escape indicators only provide a reminder function of lighting, not everyone knows the escape route and disaster situation, and displays the same status indication in normal and critical situations, making it difficult for people to discover the occurrence of a crisis. Furthermore, when a fire broke out, the visibility in the room was low, and it was impossible to clearly know the direction or location of the escape, and the smoke filled the air. Not only was it difficult to breathe, but even the eyes could not be opened, so people had to close their eyes to escape. In this case, the escape personnel have no way to clearly see the escape direction indicated by the "escape indicator light", and are often trapped inside because they can't escape in time. Furthermore, in large houses or shopping malls, due to the dense population of residents/personnel, the escaped residents/personnel will flock to one place according to the evacuation indicator, which is very likely to cause a stampede accident; at the same time, the situation at the fire scene is changing rapidly, sometimes There is a fire in the evacuation passage, so the evacuation instructions are likely to guide the personnel to a dangerous escape route. It can be seen that the current warning related equipment in the event of a fire has a limited effect.

是以,如何改善上述問題並且提供根據火災現場的即時情況進而及時調整疏散逃生路徑以及提升火災現場的救援成功率,申請人有鑑於習知技術中所產生之缺失,經過悉心試驗與研究,並一本鍥而不捨之精神,終構思出本發明以解決習知技藝的缺點。 Therefore, how to improve the above problems and provide timely adjustment of evacuation and escape paths according to the real-time situation of the fire scene and improve the success rate of rescue at the fire scene, the applicant has carefully tested and researched in view of the deficiencies in the known technology, and With the spirit of perseverance, the present invention was finally conceived to solve the shortcomings of the conventional techniques.

有鑑於此,本發明提供一種可定址煙霧偵測裝置、火場逃生導引及搜救輔助系統、以及基於提高火場存活率的資訊應用方法,通過具有短距離通訊的可定址煙霧偵測裝置可即時監測煙霧並與建築物內的可攜 式行動裝置進行通訊,並將偵測數據以及人員位置通過受信總機傳送至雲端伺服主機進行分析,當發生火災時,雲端伺服主機通過運算分析以產生對於火場受困人員或者消防救難人員有利逃生或者救援的即時動態資訊,並通過雲端伺服主機各別傳送至受困人員或者消防救難人員自身的可攜式行動裝置,尤其是公共場所或住家等建築物發生火災等緊急狀況時,可以引導建築物內的人員可快速逃離建築物或者增加建築物外的搜救人員更快尋找到受困人員的機率,以提升火災現場的人員存活率。 In view of this, the present invention provides an addressable smoke detection device, a fire escape guidance and search and rescue assistance system, and an information application method based on improving the survival rate of a fire. Instantly monitor smoke and interact with portable The mobile device communicates with the mobile device, and transmits the detection data and personnel positions to the cloud server host through the trusted switchboard for analysis. When a fire occurs, the cloud server host performs calculation and analysis to generate a favorable escape for the people trapped in the fire or the fire rescue personnel. Or the real-time dynamic information of rescue, and send it to the trapped people or the portable mobile devices of fire rescue personnel through the cloud server, especially in public places or buildings such as homes and other emergency situations such as fire, can guide the building. People in the object can quickly escape the building or increase the probability of search and rescue personnel outside the building to find the trapped person faster, so as to improve the survival rate of people at the fire scene.

為達成本發明之一目的,本發明提供一種可定址煙霧偵測裝置,包括殼體、煙霧感知單元以及信標發送單元;該煙霧感知單元安設於該殼體中且用以偵測因煙霧粒子而散射所產生的光並轉換為一電子訊號;該信標發送單元安設於該殼體中且包含一微處理器、一定址受信模組以及一收發模組,該微處理器用以接收該電子訊號並轉換為一偵測數據,該定址受信模組電連接該微處理器且用以設定一或多個位址,並且該定址受信模組能夠發送一信標無線訊號以使在其訊號區域中每一持有可攜式行動裝置之用戶通過無線通訊方式來監測到該可攜式行動裝置的出現,來回應產生一用戶位置信號,而該收發模組電連接該微處理器且用以發送包含該偵測數據、該定址受信模組所指定位址以及該用戶位置信號之一環境狀態訊號並傳送至外部的一受信總機,以使當火災發生時,藉由該信標無線訊號取得火災發生區域;其中該定址受信模組為一具有身分ID且由外部訊號進行設定之電子式定址受信模組、或者是具有多個指撥開關之二進位式定址受信模組。 In order to achieve one object of the present invention, the present invention provides an addressable smoke detection device, comprising a casing, a smoke sensing unit and a beacon sending unit; the smoke sensing unit is installed in the casing and is used to detect smoke caused by smoke The light generated by the scattering of particles is converted into an electronic signal; the beacon sending unit is installed in the casing and includes a microprocessor, a fixed-address receiving module and a transceiver module, and the microprocessor is used for receiving The electronic signal is converted into a detection data, the address-receiver module is electrically connected to the microprocessor and used to set one or more addresses, and the address-receiver module can send a beacon wireless signal to enable the Each user holding a portable mobile device in the signal area monitors the appearance of the portable mobile device through wireless communication, and generates a user position signal in response, and the transceiver module is electrically connected to the microprocessor and It is used to send an environmental status signal including the detection data, the address designated by the address receiving module and the user location signal and transmit it to an external trusted switchboard, so that when a fire occurs, the beacon wireless The signal obtains the fire occurrence area; wherein the address receiving module is an electronic address receiving module with an ID and set by an external signal, or a binary address receiving module with a plurality of DIP switches.

根據本發明一實施例,其中該定址受信模組係為一低功率藍芽模組(Bluetooth Low Energy,BLE),該低功率藍芽模組被指定一MAC位址以定義出該信標發送單元所配置的位置訊號,並且用以在其訊號區域 中每一持有該可攜式行動裝置之用戶通過藍芽通訊方式進行監測,而該收發模組為一無線雙向收發器或者一有線雙向收發器。 According to an embodiment of the present invention, the address-receiving module is a low-power Bluetooth module (Bluetooth Low Energy, BLE), and the low-power Bluetooth module is assigned a MAC address to define the beacon transmission The location signal the unit is configured with and used in its signal area Each user holding the portable mobile device is monitored by means of bluetooth communication, and the transceiver module is a wireless two-way transceiver or a wired two-way transceiver.

為達成本發明之另一目的,本發明再提供一種火場逃生導引及搜救輔助系統,包括本發明上述之可定址煙霧偵測裝置、至少一受信總機以及一雲端伺服主機;該些可定址煙霧偵測裝置分別安設於一建築物中的多個監測點,用以發送包含每個監測點之該偵測數據、該定址受信模組所指定位址以及該用戶位置信號之該環境狀態訊號;該受信總機配置在該建築物之部分樓層中,用以接收來自可定址煙霧偵測裝置所發送之該環境狀態訊號並轉換成一異常警報信號;該雲端伺服主機用以接收該異常警報信號且包含一地理圖資、一導引規劃單元和一路徑產生單元;該地理圖資至少包含該建築物各樓層之平面結構圖、消防設施、通訊設備及逃生門之位置;該導引規劃單元用以根據一火災事故現場的即時狀況產生一即時導引資訊;該路徑產生單元用以根據最新產生之該即時導引資訊以及該用戶位置產生一最佳化逃生路徑,該最佳化逃生路徑為具有通往N個特定目標之路線圖且N≧1;其中該雲端伺服主機根據該用戶位置信號發送一路徑導引資訊至該可攜式行動裝置,該路徑導引資訊至少包含有該最佳化逃生路徑中至少一部分鄰近該可攜式行動裝置的路線,而該導引規劃單元所產生的該即時導引資訊可根據來自該可攜式行動裝置的無線通訊範圍信號進行修正更新,再由路徑產生單元產生更新後之該最佳化逃生路徑並回傳至該可攜式行動裝置。 In order to achieve another object of the present invention, the present invention further provides a fire escape guidance and search and rescue assistance system, including the addressable smoke detection device of the present invention, at least one trusted switchboard and a cloud server host; The smoke detection devices are respectively installed at a plurality of monitoring points in a building, and are used to transmit the detection data including the detection data of each monitoring point, the address specified by the address receiving module and the environmental status of the user location signal signal; the trusted switchboard is arranged in some floors of the building to receive the environmental state signal sent from the addressable smoke detection device and convert it into an abnormal alarm signal; the cloud server host is used to receive the abnormal alarm signal It also includes a geographic map, a guidance planning unit and a path generation unit; the geographic map at least includes the floor plan of each floor of the building, the location of firefighting facilities, communication equipment and escape doors; the guidance planning unit is used for generating a real-time guidance information according to the real-time situation of a fire accident scene; the route generating unit is used for generating an optimal escape route according to the latest generated real-time guidance information and the user position, and the optimal escape route is a route map to N specific targets and N≧1; wherein the cloud server sends a route guidance information to the portable mobile device according to the user location signal, and the route guidance information at least includes the most At least a part of the optimized escape route is adjacent to the route of the portable mobile device, and the real-time guidance information generated by the guidance planning unit can be modified and updated according to the wireless communication range signal from the portable mobile device, and then The updated optimized escape route is generated by the route generating unit and sent back to the portable mobile device.

根據本發明一實施例,其中該導引規劃單元連結一導引計畫資料庫,該導引計畫資料庫包含有與該可定址煙霧偵測裝置對應的多個預定導引資訊;該導引規劃單元根據多個該異常警報訊號中的偵測數據以及 該地理圖資之結合計算以產生一火災模擬現場狀態資訊,並根據火災模擬現場狀態資訊自該預定導引資訊中之一選擇作為該即時導引資訊。 According to an embodiment of the present invention, the guidance planning unit is connected to a guidance plan database, and the guidance plan database includes a plurality of predetermined guidance information corresponding to the addressable smoke detection device; the guidance plan The planning unit is based on the detection data in a plurality of the abnormal alarm signals and The combination of the geographic map data is calculated to generate a fire simulation site state information, and one of the predetermined guidance information is selected as the real-time guidance information according to the fire simulation site state information.

根據本發明一實施例,其中該受信總機係為一R型受信總機,該R型受信總機對應到多個該可定址煙霧偵測裝置,以分別接收該些該可定址煙霧偵測裝置通過該收發模組所發送的該環境狀態訊號。 According to an embodiment of the present invention, the trusted switchboard is an R-type trusted switchboard, and the R-type trusted switchboard corresponds to a plurality of the addressable smoke detection devices, so as to respectively receive the addressable smoke detection devices through the transceiver The environmental status signal sent by the module.

根據本發明一實施例,其中該可攜式行動裝置內載有一逃生導引應用程式,該逃生導引應用程式用以圖像方式顯示包含有該可攜式行動裝置之即時位置的該最佳化逃生路徑之動態路線圖,且該動態路線圖根據該可攜式行動裝置的移動方向自動變換導引方向。 According to an embodiment of the present invention, the portable mobile device is loaded with an escape guidance application, and the escape guidance application is used to display the optimal location including the real-time position of the portable mobile device in an image manner. A dynamic route map of the escape route is created, and the dynamic route map automatically changes the guiding direction according to the moving direction of the portable mobile device.

根據本發明一實施例該雲端伺服主機還包含有一訊號強度判斷單元以及一人員定位通報單元;該訊號強度判斷單元用以根據該異常警報信號,來分析計算出每一持有可攜式行動裝置之用戶的受困人數及其相對距離之一待救援資訊;該人員定位通報單元用以接收該待救援資訊並結合該地理圖資,以產生該建築物中各樓層中每一持有可攜式行動裝置之用戶的人數以及即時位置的一搜救通報資訊,而火災現場救難人員係透過自身的可攜式行動裝置自該雲端伺服主機以有線或無線方式接收該搜救通報資訊。 According to an embodiment of the present invention, the cloud server host further includes a signal strength judging unit and a personnel location reporting unit; the signal strength judging unit is used for analyzing and calculating each portable mobile device according to the abnormal alarm signal. Information about the number of trapped users and their relative distances to be rescued; the personnel positioning notification unit is used to receive the information to be rescued and combine with the geographic map data to generate a portable The number of users of the portable mobile device and a search and rescue notification information of the real-time location, and the rescue personnel at the fire scene receive the search and rescue notification information from the cloud server host in a wired or wireless manner through their own portable mobile devices.

根據本發明一實施例,該訊號強度判斷單元是根據該些可定址煙霧偵測裝置中的該定址受信模組與每一持有可攜式行動裝置之用戶之間的通訊強度(RSSI,Received Signal Strength Indication)、或者是該可定址煙霧偵測裝置中的該定址受信模組與每一持有可攜式行動裝置之用戶之間的訊號接收時間差,來分析計算出每一用戶所受困的人數與相對距離之該待救援資訊。 According to an embodiment of the present invention, the signal strength determination unit is based on the communication strength (RSSI, Received) between the addressable trust module in the addressable smoke detection devices and each user holding a portable mobile device Signal Strength Indication), or the signal receiving time difference between the addressable receiving module in the addressable smoke detection device and each user holding a portable mobile device, to analyze and calculate the trouble of each user The number of people and the relative distance to be rescued.

根據本發明一實施例,其中該雲端伺服主機更包含一火場模擬單元,該火場模擬單元根據配置在該建築物中各樓層的多個該異常警報訊號中的偵測數據以及該地理圖資之結合,來分析計算以產生一火場特徵模擬分布圖,並與該訊號強度判斷單元所產生的該待救援資訊結合,由該人員定位通報單元分析運算以產生具有該火場特徵模擬分布圖之該搜救通報資訊。 According to an embodiment of the present invention, the cloud server host further includes a fire field simulation unit, and the fire field simulation unit is based on the detection data and the geographic map of a plurality of the abnormal alarm signals disposed on each floor of the building The combination of the information is analyzed and calculated to generate a simulated distribution map of the characteristics of the fire scene, and combined with the information to be rescued generated by the signal strength judgment unit, the personnel positioning and notification unit is analyzed and calculated to generate a simulated distribution with the characteristics of the fire scene. The picture shows the search and rescue notification information.

根據本發明一實施例,其中該訊號強度判斷單元更包含根據該些可定址煙霧偵測裝置中的該定址受信模組與每一持有可攜式行動裝置之用戶之間的訊號接收時間差,並根據每一持有可攜式行動裝置之用戶的在一定時間內是否移動一預定距離,來判斷每一持有可攜式行動裝置之用戶的受困程度以產生一生命跡象感測資訊,並由該人員定位通報單元分析運算以產生具有該生命跡象感測資訊之該搜救通報資訊。 According to an embodiment of the present invention, wherein the signal strength determination unit further comprises a signal receiving time difference between the addressable receiver module in the addressable smoke detection devices and each user holding the portable mobile device, and according to whether each user holding the portable mobile device moves a predetermined distance within a certain period of time, to determine the degree of trapping of each user holding the portable mobile device to generate a life sign sensing information, And the personnel positioning notification unit analyzes and calculates to generate the search and rescue notification information with the life sign sensing information.

為達成本發明之又一目的,本發明再提供一種基於提高火場存活率的資訊應用方法,適用於具有可攜式行動裝置之用戶,其步驟包括: 提供本發明上述之火場逃生導引及搜救輔助系統;自該可攜式行動裝置通過連線接收該最佳化逃生路徑以及該搜救通報資訊之前述任一者之資料封包;自該可攜式行動裝置之一顯示螢幕查看該最佳化逃生路徑以及該搜救通報資訊之前述任一者之即時資訊;其中該最佳化逃生路徑之資訊包含動態圖像、路徑提示語音或者彈出提示框之前述任一者或以上。 In order to achieve another object of the present invention, the present invention further provides an information application method based on improving the survival rate of fire scene, which is suitable for users with portable mobile devices, and the steps include: Provide the above-mentioned fire scene escape guidance and search and rescue assistance system of the present invention; receive the data packet of the optimized escape route and the search and rescue notification information through the connection from the portable mobile device; from the portable mobile device One of the display screen of the mobile device can check the real-time information of the optimized escape route and the above-mentioned one of the search and rescue notification information; wherein the information of the optimized escape route includes dynamic images, route prompt voices or pop-up prompt boxes. Any one or more of the foregoing.

10:可定址煙霧偵測裝置 10: Addressable smoke detectors

11:殼體 11: Shell

12:煙霧感知單元 12: Smoke sensing unit

12a:發射器 12a: Transmitter

12b:分光鏡 12b: Beamsplitter

12c:感測腔室 12c: Sensing Chamber

12d:校正腔室 12d: Calibration Chamber

12e:透鏡 12e: Lens

12f:光感測器 12f: Light sensor

12g:類比/數位轉換器 12g: Analog/Digital Converter

12h:過濾網 12h: Filter

13:信標發送單元 13: Beacon sending unit

13a:微處理器 13a: Microprocessor

13b:定址受信模組 13b: Addressed Trusted Module

13c:收發模組 13c: Transceiver module

20:受信總機20 20: Trusted switchboard 20

30:可攜式行動裝置 30: Portable Mobile Devices

300:雲端伺服主機 300: Cloud server host

310:地理圖資 310: Geographical Maps

311:導引規劃單元 311: Guided Planning Unit

312:路徑產生單元 312: Path generation unit

315:導引計畫資料庫 315: Orientation Project Database

321:訊號強度判斷單元 321: Signal strength judgment unit

322:人員定位通報單元 322: Personnel positioning notification unit

323:火場模擬單元 323: Fire Simulation Unit

50:可攜式行動裝置 50: Portable Mobile Devices

B:建築物 B: building

E:火災事故區域 E: fire accident area

H:特定目標 H: specific target

L:走廊 L: corridor

R1:房間 R1: Room

R2:房間 R2: Room

R3:房間 R3: Room

R4:房間 R4: Room

R5:房間 R5: Room

R6:房間 R6: Room

G:即時導引資訊 G: Real-time guidance information

R:最佳化逃生路徑 R: Optimized escape route

P1:待救援資訊 P1: Information to be rescued

P2:搜救通報資訊 P2: Search and rescue notification information

S1:信標無線訊號 S1: Beacon wireless signal

S2:環境狀態訊號 S2: Environmental status signal

S3:異常警報信號 S3: Abnormal alarm signal

圖1係顯示本發明之可定址煙霧偵測裝置的運作架構圖。 FIG. 1 is a schematic diagram showing the operation of the addressable smoke detection device of the present invention.

圖2係顯示本發明之定址受信模組的一實施態樣。 FIG. 2 shows an implementation aspect of the addressed trust module of the present invention.

圖3係顯示本發明之火場逃生導引及搜救輔助系統在逃生端的運作架構圖。 FIG. 3 is a diagram showing the operation structure of the fire escape guidance and search and rescue assistance system of the present invention at the escape end.

圖4係顯示本發明之在可攜式行動裝置顯示最佳化逃生路徑的一實施態樣。 FIG. 4 shows an embodiment of displaying the optimized escape route on the portable mobile device of the present invention.

圖5係顯示本發明之火場逃生導引及搜救輔助系統的在搜救端的運作架構圖。 FIG. 5 is a diagram showing the operation structure of the fire escape guidance and search and rescue assistance system of the present invention at the search and rescue end.

圖6係顯示本發明之在可攜式行動裝置顯示搜救通報資訊的一實施態樣。 FIG. 6 shows an embodiment of displaying search and rescue notification information on a portable mobile device of the present invention.

為了對本發明的技術特徵、目的和效果有更加清楚的理解,現對照附圖詳細說明本發明的具體實施方式。有關本發明之詳細說明及技術內容,配合圖式說明如下,然而所附圖式僅提供參考與說明用,並非用來對本創作加以限制者;而關於本發明之前述及其他技術內容、特點與功效,在以下配合參考圖式之各實施例的詳細說明中,將可清楚呈現,以下實施例所提到的方向用語,例如:「上」、「下」、「左」、「右」、「前」、「後」等,僅是參考附加圖示的方向。因此,使用的方向用語是用來說明,而並非用來限制本創作;再者,在下列各實施例中,相同或相似的元件將採用相同或相似的元件標號。 In order to have a clearer understanding of the technical features, objects and effects of the present invention, the specific embodiments of the present invention will now be described in detail with reference to the accompanying drawings. The detailed description and technical content of the present invention are described below in conjunction with the drawings. However, the accompanying drawings are only for reference and description, and are not intended to limit the creation. The aforementioned and other technical contents, features and characteristics of the present invention Efficacy, in the following detailed description of each embodiment with reference to the drawings, will be clearly presented, the directional terms mentioned in the following embodiments, such as: "up", "down", "left", "right", "Front", "Rear", etc., only refer to the directions of the attached drawings. Therefore, the directional terms used are used to illustrate rather than limit the present invention; furthermore, in the following embodiments, the same or similar elements will use the same or similar reference numerals.

基於習知技術的缺點,本發明之目的在於改善上述問題並且提供根據火災現場的即時情況進而及時調整疏散逃生路徑以及提升火災現場的救援成功率。據此,本發明分別提出一種可定址煙霧偵測裝置、火場逃生導引及搜救輔助系統、以及基於提高火場存活率的優化方法。關於本發明所述之可定址煙霧偵測裝置、火場逃生導引及搜救輔助系統、以及基 於提高火場存活率的優化方法主要是應用在公共場所或住家等建築物發生火災等緊急狀況時,除了可以引導建築物內的人員可快速逃離建築物或者增加建築物外的搜救人員更快尋找到受困人員的機率,以提升火災現場的救援成功率。據此,以下將依序詳細說明本發明之技術特徵。首先,請參考圖1所示,本發明所提出的一種可定址煙霧偵測裝置10,其主要包括殼體11、煙霧感知單元12以及信標發送單元13。 Based on the shortcomings of the prior art, the purpose of the present invention is to improve the above problems and provide timely adjustment of the evacuation escape path according to the real-time situation of the fire scene and improve the rescue success rate of the fire scene. Accordingly, the present invention proposes an addressable smoke detection device, a fire escape guidance and search and rescue assistance system, and an optimization method based on improving the survival rate of a fire. With regard to the addressable smoke detection device, fire escape guidance and search and rescue assistance system, and basic The optimization method for improving the survival rate of fire scene is mainly used in emergency situations such as fire in public places or buildings such as homes. In addition to guiding people in the building to escape the building quickly or increasing the number of search and rescue personnel outside the building, it is faster. Find the probability of trapped people to improve the success rate of rescue at the fire scene. Accordingly, the technical features of the present invention will be described in detail below in order. First, please refer to FIG. 1 , an addressable smoke detection device 10 proposed by the present invention mainly includes a casing 11 , a smoke sensing unit 12 and a beacon sending unit 13 .

殼體11可安裝在建築物內各樓層中的天花板W且該殼體11內部設有煙霧感知單元12以及信標發送單元13,而煙霧感知單元12用以偵測因煙霧粒子而散射所產生的光並轉換為一電子訊號,其主要包含有光發射器12a、分光鏡12b、感測腔室12c以及校正腔室12d,而該分光鏡12b前方設置有感測腔室12c和校正腔室12d,感測腔室12c和校正腔室12d內均設置有透鏡12e,該透鏡12e的前側設置有光感測器12f,該光感測器12f與類比/數位轉換器12g連接,且該類比/數位轉換器12g係與信標發送單元13的一微處理器13a連接,而感測腔室12c和校正腔室12d上分別設置有過濾網12h。 The casing 11 can be installed on the ceiling W of each floor in the building, and the casing 11 is provided with a smoke sensing unit 12 and a beacon sending unit 13, and the smoke sensing unit 12 is used to detect the scattering of smoke particles. The light is converted into an electronic signal, which mainly includes a light emitter 12a, a beam splitter 12b, a sensing chamber 12c and a correction chamber 12d, and a sensing chamber 12c and a correction chamber are arranged in front of the beam splitter 12b 12d, both the sensing chamber 12c and the calibration chamber 12d are provided with a lens 12e, the front side of the lens 12e is provided with a light sensor 12f, the light sensor 12f is connected to the analog/digital converter 12g, and the analog The /digital converter 12g is connected to a microprocessor 13a of the beacon sending unit 13, and the sensing chamber 12c and the calibration chamber 12d are respectively provided with filters 12h.

承上所述,當煙霧感知單元12進行煙霧濃度感測時,含煙霧粒子的氣體經過感測腔室12c以及校正腔室12d,而含有煙霧粒子的氣體進入感測腔室12c進行量測並由校正腔室12d即時的進行校正,由於含有煙霧粒子的氣體使得光的散射加強,散射光由光感測器12f接收後通過類比/數位轉換器12g轉化成電子訊號(類比訊號轉換成數位信號),並傳輸至該微處理器13a進行運算處理以產生一偵測數據。進一步說明,由於設計有感測腔室12c和校正腔室12d,可即時的進行校正,從而避免外界溫度或者光照等波動引起的噪音,能有效抗干擾而使感測精度提高。再者,通過過濾網12h來避免灰塵或者固體顆粒在煙霧感測器上的堆積造成的設備檢測誤差。 As mentioned above, when the smoke sensing unit 12 performs smoke concentration sensing, the gas containing smoke particles passes through the sensing chamber 12c and the calibration chamber 12d, and the gas containing smoke particles enters the sensing chamber 12c for measurement and measurement. The calibration is performed in real time by the calibration chamber 12d. The light scattering is enhanced by the gas containing the smoke particles. The scattered light is received by the light sensor 12f and then converted into an electronic signal by the analog/digital converter 12g (the analog signal is converted into a digital signal). ), and transmitted to the microprocessor 13a for arithmetic processing to generate a detection data. It is further explained that due to the design of the sensing chamber 12c and the calibration chamber 12d, the calibration can be performed in real time, thereby avoiding noise caused by fluctuations in external temperature or illumination, effectively resisting interference and improving the sensing accuracy. Furthermore, the device detection error caused by the accumulation of dust or solid particles on the smoke sensor is avoided by the filter screen 12h.

信標發送單元13安設於該殼體11中且包含該微處理器13a、一定址受信模組13b以及一收發模組13c,該微處理器13a用以接收上述該電子訊號(數位訊號)並轉換為該偵測數據;又,該定址受信模組13b連接該微處理器13a且被用以設定一或多個位址,該定址受信模組13b能夠發送一信標無線訊號S1以使在其訊號區域中每一持有可攜式行動裝置30之用戶通過無線通訊方式來監測到該可攜式行動裝置30的出現時,回應產生一用戶位置信號(圖未示出),而該收發模組13c電連接該微處理器13a且用以發送包含該偵測數據、該定址受信模組13b所指定位址以及該用戶位置信號之一環境狀態訊號S2並傳送至外部的一受信總機20,以使當火災發生時,藉由該環境狀態訊號S2取得火災發生區域資訊。 The beacon sending unit 13 is installed in the casing 11 and includes the microprocessor 13a, an address receiving module 13b and a transceiver module 13c, the microprocessor 13a is used for receiving the electronic signal (digital signal) and converted into the detection data; in addition, the address receiving module 13b is connected to the microprocessor 13a and used to set one or more addresses, the address receiving module 13b can send a beacon wireless signal S1 to make When each user holding the portable mobile device 30 in its signal area monitors the presence of the portable mobile device 30 through wireless communication, a user location signal (not shown) is generated in response, and the The transceiver module 13c is electrically connected to the microprocessor 13a and is used for sending an environmental state signal S2 including the detection data, the address designated by the address receiving module 13b and the user location signal, and transmitting it to an external trusted switchboard 20, so that when a fire occurs, the fire occurrence area information can be obtained by the environmental state signal S2.

根據本發明一實施例,其中該定址受信模組13b可以是一具有身分ID且由外部訊號進行設定之電子式定址受信模組。 According to an embodiment of the present invention, the addressing trust module 13b may be an electronic addressing trust module with an ID and set by an external signal.

承上所述,進一步說明,該定址受信模組13b亦可以是利用自動方式改變位址的一電子式定址受信模組,例如,如圖2所示的低功率藍芽模組(Bluetooth Low Energy,BLE),藍芽MAC地址由NAP 16位元、UAP 8位元及LAP 24位元共同組成共48位元的定址,藍芽晶片於出廠時對應唯一MAC地址。該低功率藍芽模組被指定有一MAC位址以定義出該信標發送單元所配置的位置訊號,並且用以在其訊號區域中每一持有該可攜式行動裝置之用戶通過藍芽通訊方式進行監測;因為低功率藍芽模組(BLE)其具有電子晶片身份ID的功能,藉由外部訊號自動進行設定或指定其代表的位置或區域。 Based on the above, it is further explained that the address receiving module 13b may also be an electronic addressing receiving module that changes the address in an automatic manner, for example, a low-power Bluetooth module (Bluetooth Low Energy) as shown in FIG. 2 . , BLE), the Bluetooth MAC address is composed of NAP 16-bit, UAP 8-bit and LAP 24-bit together to form a total of 48-bit addressing, the Bluetooth chip corresponds to a unique MAC address when it leaves the factory. The low-power bluetooth module is assigned a MAC address to define the location signal configured by the beacon sending unit, and is used for each user holding the portable mobile device in its signal area through bluetooth The communication method is used for monitoring; because the low-power bluetooth module (BLE) has the function of electronic chip identification ID, it can automatically set or designate the position or area it represents by external signals.

根據本發明一實施例,其中該定址受信模組13b主要用以接收來自在其訊號區域中每一持有該可攜式行動裝置30之用戶通過藍芽通訊方式進行監測,以識別出該可攜式行動裝置30的出現,來回應產生相對應 的該用戶位置信號。在本實施例中,該信標無線訊號S1包括該可攜式行動裝置30的位置資訊。在其他實施例中,該信標無線訊號S1還可包括該定址受信模組13b的位置資訊,或者該可攜式行動裝置30和該定址受信模組13b的其他參數。另外,該可攜式行動裝置30的位置還可由多個該定址受信模組13b發出的該用戶位置信號來確定。 According to an embodiment of the present invention, the address receiving module 13b is mainly used for receiving monitoring through bluetooth communication from each user holding the portable mobile device 30 in its signal area, so as to identify the mobile device. The appearance of the portable mobile device 30, in response to the corresponding generation the user's location signal. In this embodiment, the beacon wireless signal S1 includes the location information of the portable mobile device 30 . In other embodiments, the beacon wireless signal S1 may further include the location information of the address receiving module 13b, or other parameters of the portable mobile device 30 and the address receiving module 13b. In addition, the location of the portable mobile device 30 can also be determined by the user location signals sent by the plurality of address receiving modules 13b.

根據本發明一實施例,其中該收發模組13c是將微處理器13a的訊號透過有線或無線的方式雙向傳輸,於本實施例中,該傳輸模組13是一無線雙向傳輸模組;例如可以具備有Wi-Fi、乙太網、4G及低功率藍芽模組(Bluetooth Low Energy,BLE)網狀網路(Mesh Network)中之至少一種以上的通訊介面。 According to an embodiment of the present invention, the transceiver module 13c transmits the signal of the microprocessor 13a bidirectionally by wire or wirelessly. In this embodiment, the transmission module 13 is a wireless bidirectional transmission module; for example It may have at least one or more communication interfaces among Wi-Fi, Ethernet, 4G, and low-power Bluetooth (Bluetooth Low Energy, BLE) mesh network (Mesh Network).

基於上述的可定址煙霧偵測裝置10之技術特徵,請配合參考圖3至圖6所示,本發明再提出一種火場逃生導引及搜救輔助系統,其主要應用于發生火災時的尋找正確入口的導引。該火場逃生導引及搜救輔助系統包括:多個可定址煙霧偵測裝置10、至少一受信總機20以及雲端伺服主機300。在火場逃生導引方面,如圖3所示之本發明的系統在逃生端的運作架構圖,該些可定址煙霧偵測裝置10分別安設於一建築物中的位置形成多個監測點,用以發送包含每個監測點之該偵測數據、該定址受信模組13b所指定位址以及該用戶位置信號之該環境狀態訊號S2,而受信總機(圖未示出)則配置在該建築物之部分樓層中,用以接收來自可定址煙霧偵測裝置所發送之該環境狀態訊號S2並轉換成一異常警報信號S3。在本實施例中,該受信總機20係為一R型受信總機;該R型受信總機對應到多個該可定址煙霧偵測裝置10,以分別接收該些該可定址煙霧偵測裝置10通過該收發模組13c所發送的該環境狀態訊號S2。 Based on the above technical features of the addressable smoke detection device 10 , please refer to FIGS. 3 to 6 , the present invention further proposes a fire escape guidance and search and rescue assistance system, which is mainly used to find the correct Guide to the entrance. The fire escape guidance and search and rescue assistance system includes: a plurality of addressable smoke detection devices 10 , at least one trusted switchboard 20 and a cloud server host 300 . In terms of fire escape guidance, as shown in FIG. 3 , the operation structure diagram of the system of the present invention at the escape end, the addressable smoke detection devices 10 are respectively installed at positions in a building to form a plurality of monitoring points. It is used to send the environmental status signal S2 including the detection data of each monitoring point, the address designated by the address receiving module 13b and the user location signal, and the trusted switchboard (not shown in the figure) is arranged in the building In some floors of the building, it is used to receive the environmental state signal S2 sent from the addressable smoke detection device and convert it into an abnormal alarm signal S3. In this embodiment, the trusted switchboard 20 is an R-type trusted switchboard; the R-type trusted switchboard corresponds to a plurality of the addressable smoke detection devices 10 to respectively receive the addressable smoke detection devices 10 through the The environment state signal S2 sent by the transceiver module 13c.

進一步說明,該些可定址煙霧偵測裝置10可遍佈建築物B的各個角落,以便該可攜式行動裝置30在該建築物B的任一角落均能被檢測到,其中包括房間R1~R6的火災事故發生現場。該些可定址煙霧偵測裝置10還可根據實際需要設置於其他地方如各種房間、走廊、廁所或樓梯間等等。再者,該些可定址煙霧偵測裝置10更可設置在該建築物B或房間R1~R6的每一出口,以便該可攜式行動裝置30穿過出口時可被檢測到。 To further illustrate, the addressable smoke detection devices 10 can be spread all over the corners of the building B, so that the portable mobile device 30 can be detected in any corner of the building B, including the rooms R1-R6 the scene of the fire accident. The addressable smoke detection devices 10 can also be installed in other places such as various rooms, corridors, toilets or stairwells, etc. according to actual needs. Furthermore, the addressable smoke detection devices 10 may be disposed at each exit of the building B or rooms R1-R6, so that the portable mobile device 30 can be detected when passing through the exit.

雲端伺服主機300主要用以接收該異常警報信號S3且包含一導引規劃單元311和一路徑產生單元312,而雲端伺服主機300儲存有一地理圖資310;該地理圖資310至少包含該建築物各樓層之平面結構圖、消防設施、通訊設備及逃生門之位置;該導引規劃單元311用以根據火災事故現場的即時狀況產生一即時導引資訊G,以即時回應發生火災事故現場的事故區域E的現場狀況;該路徑產生單元312據最新產生之該即時導引資訊以及該用戶位置產生一最佳化逃生路徑R,該最佳化逃生路徑R為具有通往N個特定目標H之路線圖且N≧1,而特定目標H如出口、某一地點或滅火器的最佳化逃生路徑R(如圖4中粗體箭頭所示)以回應該導引規劃單元311所產生的該即時導引資訊G;該最佳化逃生路徑R主要是根據最新產生的即時導引資訊G和該異常警報信號S3中的該用戶位置信號而生成的。該雲端伺服主機300則通過無線網路與該受信總機20進行通信,其中該無線網路為如Wi-Fi、藍牙或GSM(Global System for Mobile Communications)通信標準的無線網路。另外,可攜式行動裝置30也可以直接傳送信標無線訊號S1至雲端伺服主機300中以提供用戶位置信號。 The cloud server host 300 is mainly used for receiving the abnormal alarm signal S3 and includes a guidance planning unit 311 and a path generation unit 312, and the cloud server host 300 stores a geographic map 310; the geographic map 310 at least includes the building The floor plan of each floor, the location of fire protection facilities, communication equipment and escape doors; the guidance planning unit 311 is used to generate a real-time guidance information G according to the real-time situation of the fire accident site, so as to respond to the accident at the fire accident site in real time The on-site situation of the area E; the route generating unit 312 generates an optimized escape route R according to the newly generated real-time guidance information and the user position, and the optimized escape route R is a route leading to N specific targets H Route map and N≧1, and a specific target H such as an exit, a certain location, or an optimized escape route R of a fire extinguisher (shown by the bold arrow in FIG. 4 ) in response to the instant generated by the guidance planning unit 311 Guidance information G; the optimized escape route R is mainly generated according to the newly generated real-time guidance information G and the user position signal in the abnormal alarm signal S3. The cloud server 300 communicates with the trusted switchboard 20 through a wireless network, wherein the wireless network is a wireless network of a communication standard such as Wi-Fi, Bluetooth or GSM (Global System for Mobile Communications). In addition, the portable mobile device 30 can also directly transmit the beacon wireless signal S1 to the cloud server 300 to provide the user location signal.

承上所述,該雲端伺服主機300根據該用戶位置信號發送一路徑導引資訊至該可攜式行動裝置30,該路徑導引資訊至少包含有該最佳化逃生路徑R中至少一部分鄰近該可攜式行動裝置30的路線,而該導引規 劃單元311所產生的該即時導引資訊可根據來自該可攜式行動裝置30的無線通訊範圍信號進行修正更新,再由路徑產生單元312產生更新後之該最佳化逃生路徑R並回傳至該可攜式行動裝置30。 As mentioned above, the cloud server 300 sends a route guidance information to the portable mobile device 30 according to the user location signal, and the route guidance information at least includes at least a part of the optimized escape route R adjacent to the the route of the portable mobile device 30, and the guide The real-time guidance information generated by the planning unit 311 can be modified and updated according to the wireless communication range signal from the portable mobile device 30, and then the updated optimized escape route R is generated by the route generation unit 312 and sent back to the portable mobile device 30 .

在本實施例中,如圖4所示,灰色陰影部分表示該些可定址煙霧偵測裝置10所感測到的火災事故發生現場的區域E。箭頭表示通往出口E1的最佳化逃生路徑R。當該些可定址煙霧偵測裝置10感測到該事故區域E所發生的火災事故的現場狀況時,用以接收來自可定址煙霧偵測裝置10所發送之環境狀態訊號S2的受信總機(圖未示出)則轉換成異常警報信號S3並發送至該雲端伺服主機300,其中該異常警報信號S3包括被觸發的可定址煙霧偵測裝置10的狀態資訊(該偵測數據、該定址受信模組所指定位址以及該用戶位置信號)。 In this embodiment, as shown in FIG. 4 , the gray shaded portion represents the area E of the fire accident scene sensed by the addressable smoke detection devices 10 . The arrows indicate the optimal escape route R to exit E1. When the addressable smoke detection devices 10 sense the on-site condition of the fire accident in the accident area E, a trusted switchboard for receiving the environmental state signal S2 sent from the addressable smoke detection device 10 (Fig. (not shown) is converted into an abnormal alarm signal S3 and sent to the cloud server host 300, wherein the abnormal alarm signal S3 includes the status information of the triggered addressable smoke detection device 10 (the detection data, the addressable signal mode the address specified by the group and the user location signal).

根據本發明一實施例,該導引規劃單元311連結一導引計畫資料庫315,該導引計畫資料庫315包含有與該可定址煙霧偵測裝置10對應的多個預定導引資訊;該導引規劃單元311則是根據多個該信標無線訊號S1中的偵測數據以及該地理圖資之結合計算以產生一火災模擬現場狀態資訊,並根據火災模擬現場狀態資訊自該預定導引資訊中之一選擇作為該即時導引資訊。每一預定導引資訊主要是根據對應可定址煙霧偵測裝置10的狀態參數如位置、型號、感應參數或被觸發的時間而預先設定的。每一預定導引資訊包括對應可定址煙霧偵測裝置10的多個用於選擇導引資訊的狀態參數和最佳化逃生路徑R。進一步說明,該預定導引資訊更可包括與火災事故相關的救生物件的資訊,例如滅火器的位置。 According to an embodiment of the present invention, the guidance planning unit 311 is linked to a guidance plan database 315 , and the guidance plan database 315 includes a plurality of predetermined guidance information corresponding to the addressable smoke detection device 10 . ; The guidance planning unit 311 generates a fire simulation site status information according to the combination of the detection data in the plurality of beacon wireless signals S1 and the geographic map data, and according to the fire simulation site status information from the predetermined One of the guidance information is selected as the real-time guidance information. Each predetermined guide information is mainly preset according to the state parameters of the corresponding addressable smoke detection device 10 , such as location, model, sensing parameter or triggered time. Each predetermined guidance information includes a plurality of state parameters for selecting guidance information and an optimized escape route R corresponding to the addressable smoke detection device 10 . Further, the predetermined guidance information may further include information of life-saving items related to the fire incident, such as the location of the fire extinguisher.

該可攜式行動裝置30可以為具有短距離無線通訊功能的智慧型手機或平板電腦。該些可定址煙霧偵測裝置10中的定址受信模組13b可通過短距離無線通訊方式與該可攜式行動裝置30進行通信,以識別該可 攜式行動裝置30的位置。本實施例中,該短距離無線通訊方式可以是藍牙發送器和接收器(例如:支援低功率藍芽通訊功能),但不依此為限制。該短距離無線通訊方式亦可以是其他通信標準的裝置如分別為RFID(radio-frequency identification,射頻識別)標籤和RFID識別器,或分別為NFC(near field communication,近場通信)發送器和接收器,或分別為超寬頻(UWB)發送器和接收器等。在本實施例中,該可攜式行動裝置內可載有一逃生導引應用程式,該逃生導引應用程式用以圖像方式顯示包含有該可攜式行動裝置之即時位置的該最佳化逃生路徑之動態路線圖,且該動態路線圖根據該可攜式行動裝置30的移動方向自動變換導引方向,如圖3之該可攜式行動裝置30中的顯示螢幕所顯示之內容,圖式中得顯示內容僅作為一種實施態樣之表示,不以此作為限制。另外,該可攜式行動裝置30還可包括發聲單元如手機揚聲器或擴音器,以根據該最佳戶逃生路徑R提供音訊導引,該音訊導引可通過通話信號啟動發聲單元實現。 The portable mobile device 30 can be a smart phone or a tablet computer with a short-range wireless communication function. The addressable trust module 13b in the addressable smoke detection devices 10 can communicate with the portable mobile device 30 through short-range wireless communication to identify the addressable smoke detection device 10. The location of the portable mobile device 30 . In this embodiment, the short-range wireless communication method may be a Bluetooth transmitter and receiver (for example, supporting a low-power Bluetooth communication function), but it is not limited thereto. The short-range wireless communication method can also be devices of other communication standards, such as RFID (radio-frequency identification, radio frequency identification) tags and RFID identifiers, or NFC (near field communication, near field communication) transmitters and receivers, respectively transmitters, or ultra-wideband (UWB) transmitters and receivers, respectively. In this embodiment, an escape guidance application may be loaded in the portable mobile device, and the escape guidance application is used to graphically display the optimization including the real-time location of the portable mobile device A dynamic route map of the escape route, and the dynamic route map automatically changes the guiding direction according to the moving direction of the portable mobile device 30 , as shown in the display screen of the portable mobile device 30 in FIG. 3 . The content shown in the formula is only a representation of an implementation form, and is not intended to be a limitation. In addition, the portable mobile device 30 may further include a sounding unit such as a mobile phone speaker or a loudspeaker, so as to provide audio guidance according to the best escape route R, and the audio guidance can be realized by activating the sounding unit through a call signal.

承上所述,當建築物B中的可定址煙霧偵測裝置10偵測到建築物內發生火災時,該火場逃生導引系統的雲端伺服主機300可即時接收異常警報信號S3,並自該異常警報信號S3中根據該可攜式行動裝置30的位置通過該可攜式行動裝置30提供受困人員逃生導引。另外,本發明的逃生導引是根據該可攜式行動裝置30的位置和緊急事故現場狀況即時生成的,因此,能夠為該可攜式行動裝置30的用戶即時提供更準確的逃生導引,而且通過僅傳送最佳戶逃生路徑R的鄰近該可攜式行動裝置30的部分路線可有效節省傳送最佳化逃生路徑R的時間和網路頻寬。由於只顯示最佳化逃生路徑R的鄰近該可攜式行動裝置的部分路線,在火場中因濃煙密布導致視線不佳的狀況下,用戶也能夠認出路線。 As mentioned above, when the addressable smoke detection device 10 in the building B detects a fire in the building, the cloud server 300 of the fire escape guidance system can immediately receive the abnormal alarm signal S3, and automatically In the abnormal alarm signal S3, the portable mobile device 30 provides escape guidance for trapped persons according to the position of the portable mobile device 30 . In addition, the escape guidance of the present invention is generated in real time according to the position of the portable mobile device 30 and the situation of the emergency accident scene, therefore, more accurate escape guidance can be provided for the user of the portable mobile device 30 in real time, In addition, by transmitting only a part of the route of the optimal escape route R adjacent to the portable mobile device 30, the time and network bandwidth for transmitting the optimal escape route R can be effectively saved. Since only a part of the route of the optimized escape route R adjacent to the portable mobile device is displayed, the user can recognize the route even under the condition of poor visibility due to dense smoke in the fire scene.

又,在火場逃生搜救方面,如圖5所示之本發明的系統在逃生端的運作架構圖,該雲端伺服主機300還包括有一訊號強度判斷單元321以及一人員定位通報單元322;其中該訊號強度判斷單元321用以根據各該可定址煙霧偵測裝置10傳輸至該受信總機20轉換成之該異常警報信號S3,來分析計算出每一持有可攜式行動裝置30之用戶的受困人數及其相對距離之一待救援資訊P1;該人員定位通報單元322用以接收該待救援資訊P1並結合該地理圖資310,以產生該建築物B中各樓層中每一持有可攜式行動裝置30之用戶的人數以及即時位置的一搜救通報資訊P2,而火災現場救難人員係透過自身的可攜式行動裝置50自該雲端伺服主機300以有線或無線方式接收該搜救通報資訊P2;其中該訊號強度判斷單元321是根據該些可定址煙霧偵測裝置10中的該定址受信模組13b與每一持有可攜式行動裝置30之用戶之間的通訊強度(RSSI,Received Signal Strength Indication)、或者是該可定址煙霧偵測裝置10中的該定址受信模組13b與每一持有可攜式行動裝置30之用戶之間的訊號接收時間差,來分析計算出每一用戶所受困的人數與相對距離之該待救援資訊P1。另外,該雲端伺服主機300能夠將該搜救通報資訊P2傳至該建築物B的管理室、消防救災中心、現場救難指揮官或者現場救難人員的可攜式行動裝置50,但不以此為限。 In addition, in terms of fire escape and search and rescue, as shown in FIG. 5 as the operation structure diagram of the system of the present invention at the escape end, the cloud server host 300 further includes a signal strength judging unit 321 and a personnel location reporting unit 322; wherein the signal The intensity determination unit 321 is configured to analyze and calculate the distress of each user holding the portable mobile device 30 according to the abnormal alarm signal S3 converted from the addressable smoke detection device 10 to the trusted switchboard 20 The number of people and their relative distances to be rescued information P1; the personnel location notification unit 322 is used to receive the to-be-rescue information P1 and combine the geographic map data 310 to generate each floor in the building B with portable The number of users of the portable mobile device 30 and a search and rescue notification information P2 of the real-time location, and the rescue personnel at the fire scene receive the search and rescue notification information P2 from the cloud server 300 in a wired or wireless manner through their own portable mobile device 50 . ; wherein the signal strength determination unit 321 is based on the communication strength (RSSI, Received Signal Strength Indication), or the signal receiving time difference between the addressable trust module 13b in the addressable smoke detection device 10 and each user holding the portable mobile device 30, to analyze and calculate the information of each user. The number of people trapped and the relative distance to be rescued information P1. In addition, the cloud server 300 can transmit the search and rescue notification information P2 to the management room of the building B, the fire and disaster relief center, the on-site rescue commander or the portable mobile device 50 of the on-site rescue personnel, but not limited to this .

承上所述,以6樓建築物B內部發生火災的狀況來輔助說明本系統的運作流程如下:當建築物B內發生火災時,設在1樓至6樓的多個可定址煙霧偵測裝置10分別與對應樓層的受困人員的可攜式行動裝置30相互通訊連結,現場救難人員可通過自身的可攜式行動裝置50自該雲端伺服主機300接收該搜救通報資訊P2,藉由該人員定位通報單元322的運算分析結果迅速了解各樓層的受困人數為:1樓:3名受困人員、2樓:1名受困人員、3樓:2名受困人員、4樓:無受困人員、5樓:3名受困人員、6樓:2名 受困人員。如此,能讓救難人員在出發前或到達火災現場時,立即掌握每一層樓正確的受困人數及受困位置,以做為救援優先順序的重要參考依據,從圖5可以輕易得知,由於1樓和5樓的受困人數多於其他樓層的受困人數,因此1樓和5樓應為現場救難人員優先救援的樓層,來取代傳統逐層逐戶、挨家挨戶的地毯式搜救方式。 Continuing from the above, the operation process of the system is illustrated by the fire situation inside Building B on the 6th floor as follows: When a fire breaks out in Building B, multiple addressable smoke detectors located on the 1st to 6th floors The device 10 is respectively connected with the portable mobile device 30 of the trapped person on the corresponding floor to communicate with each other. The rescue personnel can receive the search and rescue notification information P2 from the cloud server 300 through their own portable mobile device 50 . The calculation and analysis results of the personnel location notification unit 322 can quickly understand the number of trapped persons on each floor: 1st floor: 3 trapped persons, 2nd floor: 1 trapped person, 3rd floor: 2 trapped persons, 4th floor: none Trapped persons, 5th floor: 3 trapped persons, 6th floor: 2 persons Trapped persons. In this way, the rescuers can immediately grasp the correct number of trapped persons and trapped positions on each floor before departure or when they arrive at the fire scene, which can be used as an important reference for the priority of rescue. It can be easily seen from Figure 5 that because The number of people trapped on the 1st and 5th floors is larger than that on other floors. Therefore, the 1st and 5th floors should be the first floors for rescue workers to replace the traditional carpet search and rescue method.

根據本發明一實施例,其中該訊號強度判斷單元321更可根據該些可定址煙霧偵測裝置10中的該定址受信模組13b與每一持有可攜式行動裝置30之用戶之間的訊號接收時間差,並根據每一持有可攜式行動裝置30之用戶的在一定時間內是否移動一預定距離,來判斷每一持有可攜式行動裝置30之用戶的受困程度以產生一生命跡象感測資訊(圖未示出),並由該人員定位通報單元322分析運算以產生具有該生命跡象感測資訊之該搜救通報資訊P2。 According to an embodiment of the present invention, the signal strength judging unit 321 can further be based on the relationship between the addressable trust module 13b in the addressable smoke detection devices 10 and each user holding the portable mobile device 30 . The signal reception time is different, and according to whether each user holding the portable mobile device 30 moves a predetermined distance within a certain period of time, the trapped degree of each user holding the portable mobile device 30 is judged to generate a The vital sign sensing information (not shown) is analyzed and calculated by the personnel location notification unit 322 to generate the search and rescue notification information P2 with the vital sign sensing information.

根據本發明一實施例,其中該雲端伺服主機300更包含一火場模擬單元323,該火場模擬單元323根據配置在該建築物B中各樓層的多個該異常警報訊號S3中的偵測數據以及該地理圖資之結合,來分析計算以產生一火場特徵模擬分布圖map並與該訊號強度判斷單元321所產生的該待救援資訊P1結合,並由該人員定位通報單元322分析運算以產生具有該火場特徵模擬分布圖map之該搜救通報資訊P2,如圖6所示。 According to an embodiment of the present invention, the cloud server host 300 further includes a fire field simulation unit 323, and the fire field simulation unit 323 detects a plurality of the abnormal alarm signals S3 disposed on each floor of the building B according to the detection The combination of the data and the geographic map data is analyzed and calculated to generate a simulated distribution map of fire characteristics, which is combined with the information to be rescued P1 generated by the signal strength determination unit 321, and analyzed and calculated by the personnel location notification unit 322. In order to generate the search and rescue notification information P2 having the simulated distribution map of the characteristics of the fire field, as shown in FIG. 6 .

承上所述,以圖6顯示為例,在建築物B的某一樓層發生火災,灰色陰影部分表示該些可定址煙霧偵測裝置10所感測到的火災事故發生現場的區域E,該些可定址煙霧偵測裝置10可遍佈建築物B的各個角落,以便該可攜式行動裝置30在該建築物B的任一角落均能被檢測到,其中包括房間R1~R6及其每一出口。當該些可定址煙霧偵測裝置10感測到該事故區域E所發生的火災事故的現場狀況時,通過該火場模擬單元323與該人員 定位通報單元322分析運算以產生具有該火場特徵模擬分布圖map之該搜救通報資訊P2,藉由該火場特徵模擬分布圖map可使消防救難人員迅速了解該樓層的整體結構以及各房間R1~R6的受困人數為:R1:2名受困人員、R2:1名受困人員、R3:1名受困人員、R4:無受困人員、R5:1名受困人員、R6:無受困人員、走廊L:2名受困人員。據此,能有效提消防救難人員根據受困人數以及地理位置並基於自身專業知識來迅速分析判讀搜救的動線以及搜救策略。 Continuing from the above, taking FIG. 6 as an example, a fire occurs on a certain floor of the building B, and the gray shaded part represents the area E of the fire accident scene sensed by the addressable smoke detection devices 10. These The addressable smoke detection device 10 can be located in every corner of the building B, so that the portable mobile device 30 can be detected at any corner of the building B, including rooms R1-R6 and each exit thereof . When the addressable smoke detection devices 10 sense the on-site condition of the fire accident in the accident area E, the fire simulation unit 323 and the personnel The positioning notification unit 322 analyzes and calculates to generate the search and rescue notification information P2 having the simulated distribution map of the characteristics of the fire scene. The simulated distribution map of the characteristics of the fire scene can enable fire rescue personnel to quickly understand the overall structure of the floor and each room R1 ~R6 trapped persons are: R1: 2 trapped persons, R2: 1 trapped persons, R3: 1 trapped persons, R4: no trapped persons, R5: 1 trapped persons, R6: none Trapped persons, corridor L: 2 trapped persons. Accordingly, it can effectively help fire rescue personnel to quickly analyze and interpret search and rescue movements and search and rescue strategies according to the number of trapped people and geographic location and based on their own professional knowledge.

基於本發明上述各實施例中所述之火場逃生導引系統、火場搜救輔助系統,本發明再提出一種基於提高火場存活率的資訊應用方法,適用於具有可攜式行動裝置之用戶,其步驟包括:提供上述火場逃生導引及搜救輔助系統;自該可攜式行動裝置(30/50)通過連線接收該最佳化逃生路徑R以及該搜救通報資訊P2之前述任一者之資料封包;自該可攜式行動裝置(30/50)之一顯示螢幕查看該最佳化逃生路徑R以及該搜救通報資訊P2之前述任一者之即時資訊;其中該最佳化逃生路徑R之資訊包含動態圖像、路徑提示語音或者彈出提示框之前述任一者或以上。 Based on the fire scene escape guidance system and fire scene search and rescue assistance system described in the above embodiments of the present invention, the present invention further proposes an information application method based on improving the fire scene survival rate, which is suitable for users with portable mobile devices , the steps include: providing the above-mentioned fire escape guidance and search and rescue assistance system; receiving the optimized escape route R and the search and rescue notification information P2 from the portable mobile device (30/50) through a connection. The data packet of the person; check the real-time information of the optimized escape route R and the above-mentioned one of the search and rescue notification information P2 from a display screen of the portable mobile device (30/50); wherein the optimized escape The information of the route R includes any one or more of the above-mentioned dynamic images, route prompt voices or pop-up prompt boxes.

綜上所述,本發明所分別提出的一種可定址煙霧偵測裝置、火場逃生導引系統、火場搜救輔助系統、基於提高火場存活率的資訊應用方法,通過具有短距離通訊的可定址煙霧偵測裝置可即時監測煙霧並與建築物內的可攜式行動裝置進行通訊,並將偵測數據以及人員位置通過受信總機傳送至雲端伺服主機進行分析,當發生火災時,雲端伺服主機通過運算分析以產生對於火場受困人員或者消防救難人員有利逃生或者救援的即時動態資訊,並通過雲端伺服主機各別傳送至受困人員或者消防救難人員 自身的可攜式行動裝置,尤其是公共場所或住家等建築物發生火災等緊急狀況時,可以引導建築物內的人員可快速逃離建築物或者增加建築物外的搜救人員更快尋找到受困人員的機率,以提升火災現場的人員存活率。 To sum up, the present invention proposes an addressable smoke detection device, a fire escape guidance system, a fire search and rescue assistance system, and an information application method based on improving the survival rate of a fire. The addressable smoke detection device can monitor smoke in real time and communicate with portable mobile devices in the building, and transmit the detection data and personnel positions to the cloud server for analysis through the trusted switchboard. When a fire occurs, the cloud server Through calculation and analysis, real-time dynamic information that is beneficial to the escape or rescue of the people trapped in the fire or fire rescue personnel is generated, and sent to the trapped personnel or fire rescue personnel through the cloud server host respectively. Its own portable mobile device, especially in the event of an emergency such as a fire in a building such as a public place or a home, can guide the people in the building to escape the building quickly or increase the search and rescue personnel outside the building to find the trapped faster. The probability of personnel in order to improve the survival rate of personnel at the fire scene.

上面結合附圖對本發明的實施例進行了描述,但是本發明並不局限於上述的具體實施方式,上述的具體實施方式僅僅是示意性的,而不是限制性的,本領域的普通技術人員在本發明的啟示下,在不脫離本發明宗旨和申請專利範圍所保護的範圍情況下,還可做出很多形式,這些均屬於本發明的保護之內。 The embodiments of the present invention have been described above in conjunction with the accompanying drawings, but the present invention is not limited to the above-mentioned specific embodiments, which are merely illustrative rather than restrictive. Under the inspiration of the present invention, without departing from the spirit of the present invention and the scope protected by the scope of the patent application, many forms can be made, which all belong to the protection of the present invention.

10:可定址煙霧偵測裝置 10: Addressable smoke detectors

13:信標發送單元 13: Beacon sending unit

20:受信總機 20: Trusted switchboard

30:可攜式行動裝置 30: Portable Mobile Devices

300:雲端伺服主機 300: Cloud server host

310:地理圖資 310: Geographical Maps

311:導引規劃單元 311: Guided Planning Unit

312:路徑產生單元 312: Path generation unit

315:導引計畫資料庫 315: Orientation Project Database

321:訊號強度判斷單元 321: Signal strength judgment unit

322:人員定位通報單元 322: Personnel positioning notification unit

323:火場模擬單元 323: Fire Simulation Unit

G:即時導引資訊 G: Real-time guidance information

R:最佳化逃生路徑 R: Optimized escape route

S1:信標無線訊號 S1: Beacon wireless signal

S2:環境狀態訊號 S2: Environmental status signal

S3:異常警報信號 S3: Abnormal alarm signal

Claims (9)

一種火場逃生導引及搜救輔助系統,其包括:複數個可定址煙霧偵測裝置,分別安設於一建築物中的多個監測點,並且分別由一殼體、安設於該殼體中之用以偵測因煙霧粒子而散射所產生的光並轉換為一電子訊號的一煙霧感知單元、以及包含有一微處理器、電連接於該微處理器之用以設定一或多個位址的一定址受信模組、和電連接於該微處理器之一收發模組的一信標發送單元構成;其中,該定址受信模組能夠發送一信標無線訊號以使在其訊號區域中每一持有可攜式行動裝置之用戶,通過無線通訊方式來監測到該可攜式行動裝置的出現時,回應產生一用戶位置信號;該收發模組用以發送包含該偵測數據、該定址受信模組所指定位址以及該用戶位置信號之一環境狀態訊號並傳送至外部的一受信總機,以使當火災發生時,藉由該環境狀態訊號取得火災發生區域資訊;又,該可定址煙霧偵測裝置為用以發送包含每個監測點之由該微處理器接收該電子訊號並轉換的該偵測數據、該定址受信模組所指定位址以及該用戶位置信號之該環境狀態訊號;至少一受信總機,配置在該建築物之部分樓層中,用以接收來自可定址煙霧偵測裝置所發送之該環境狀態訊號並轉換成一異常警報信號;一雲端伺服主機,用以接收該異常警報信號且包含一地理圖資、一導引規劃單元和一路徑產生單元;該地理圖資至少包含該建築物各樓層之平面結構圖、消防設施、通訊設備及逃生門之位置;該導引規劃單元用以根據一火災事故現場的即時狀況產生一即時導引資訊;以及 該路徑產生單元用以根據最新產生之該即時導引資訊以及該用戶位置產生一最佳化逃生路徑,該最佳化逃生路徑為具有通往N個特定目標之路線圖且N≧1;其中該雲端伺服主機根據該用戶位置信號發送一路徑導引資訊至該可攜式行動裝置,該路徑導引資訊至少包含有該最佳化逃生路徑中至少一部分鄰近該可攜式行動裝置的路線,而該導引規劃單元所產生的該即時導引資訊可根據來自該可攜式行動裝置的無線通訊範圍信號進行修正更新,再由路徑產生單元產生更新後之該最佳化逃生路徑並回傳至該可攜式行動裝置;而且該定址受信模組為一具有身分ID且由外部訊號進行設定之電子式定址受信模組。 A fire escape guidance and search and rescue assistance system, comprising: a plurality of addressable smoke detection devices, respectively installed in a plurality of monitoring points in a building, and respectively composed of a shell, installed in the shell Among them, a smoke sensing unit for detecting light generated by the scattering of smoke particles and converting it into an electronic signal, and including a microprocessor electrically connected to the microprocessor for setting one or more bits It is composed of a fixed address receiving module of the address, and a beacon sending unit electrically connected to a transceiver module of the microprocessor; wherein, the address receiving module can send a beacon wireless signal to make it in its signal area Each user who holds a portable mobile device monitors the appearance of the portable mobile device through wireless communication, and generates a user location signal in response; the transceiver module is used for sending the detection data, the The address designated by the receiving module and an environmental status signal of the user location signal are transmitted to an external trusted switchboard, so that when a fire occurs, the fire occurrence area information can be obtained through the environmental status signal; The addressable smoke detection device is used to transmit the detection data including the electronic signal received and converted by the microprocessor, the address designated by the addressable signal module and the environmental state of the user location signal of each monitoring point signal; at least one trusted switchboard, disposed in some floors of the building, for receiving the environmental state signal sent from the addressable smoke detection device and converting it into an abnormal alarm signal; a cloud server host for receiving the The abnormal warning signal also includes a geographic map, a guidance planning unit and a path generation unit; the geographic map at least includes the floor plan of each floor of the building, firefighting facilities, communication equipment and the location of the escape door; the guide The guidance planning unit is used for generating a real-time guidance information according to the real-time situation of a fire accident scene; and The route generating unit is used for generating an optimized escape route according to the newly generated real-time guidance information and the user position, and the optimized escape route is a route map leading to N specific targets and N≧1; wherein The cloud server sends a route guidance information to the portable mobile device according to the user position signal, the route guidance information at least includes a route of at least a part of the optimized escape route adjacent to the portable mobile device, The real-time guidance information generated by the guidance planning unit can be revised and updated according to the wireless communication range signal from the portable mobile device, and then the updated optimized escape route is generated by the route generation unit and sent back to the portable mobile device; and the address trust module is an electronic address trust module with an identity ID and set by an external signal. 如請求項1所述之火場逃生導引及搜救輔助系統,其中該導引規劃單元連結一導引計畫資料庫,該導引計畫資料庫包含有與該可定址煙霧偵測裝置對應的多個預定導引資訊;該導引規劃單元根據多個該異常警報訊號中的偵測數據以及該地理圖資之結合計算以產生一火災模擬現場狀態資訊,並根據火災模擬現場狀態資訊自該預定導引資訊中之一選擇作為該即時導引資訊。 The fire escape guidance and search and rescue assistance system as claimed in claim 1, wherein the guidance planning unit is connected to a guidance plan database, and the guidance plan database includes information corresponding to the addressable smoke detection device a plurality of predetermined guidance information; the guidance planning unit generates a fire simulation site state information according to the combination of the detection data in the abnormal alarm signals and the geographic map data, and automatically generates a fire simulation site state information according to the fire simulation site state information One of the predetermined guidance information is selected as the real-time guidance information. 如請求項1所述之火場逃生導引及搜救輔助系統,其中該受信總機係為一R型受信總機,該R型受信總機對應到多個該可定址煙霧偵測裝置,以分別接收該些該可定址煙霧偵測裝置通過該收發模組所發送的該環境狀態訊號。 The fire escape guidance and search and rescue assistance system according to claim 1, wherein the trusted switchboard is an R-type trusted switchboard, and the R-type trusted switchboard corresponds to a plurality of the addressable smoke detection devices to receive the the environmental status signal sent by the addressable smoke detection device through the transceiver module. 如請求項1所述之火場逃生導引及搜救輔助系統,其中該可攜式行動裝置內載有一逃生導引應用程式,該逃生導引應用程式用以圖像方式顯示包含有該可攜式行動裝置之即時位置的該最佳化逃生路徑之動 態路線圖,且該動態路線圖根據該可攜式行動裝置的移動方向自動變換導引方向。 The fire escape guidance and search and rescue assistance system as claimed in claim 1, wherein the portable mobile device is loaded with an escape guidance application, and the escape guidance application is displayed in an image way that includes the portable mobile device. Motion of the optimized escape path at the real-time location of the mobile device A dynamic route map is generated, and the dynamic route map automatically changes the guiding direction according to the moving direction of the portable mobile device. 如請求項1所述之火場逃生導引及搜救輔助系統,其中該雲端伺服主機還包含一訊號強度判斷單元以及一人員定位通報單元;其中該訊號強度判斷單元是根據該些可定址煙霧偵測裝置中的該定址受信模組與每一持有可攜式行動裝置之用戶之間的通訊強度(RSSI,Received Signal Strength Indication)、或者是該可定址煙霧偵測裝置中的該受信模組與每一持有可攜式行動裝置之用戶之間的訊號接收時間差,來分析計算出每一用戶所受困的人數與相對距離之一待救援資訊;以及該人員定位通報單元用以接收該待救援資訊並結合該地理圖資,以產生該建築物中各樓層中每一持有可攜式行動裝置之用戶的人數以及即時位置的一搜救通報資訊,而火災現場救難人員係透過自身的可攜式行動裝置自該雲端伺服主機以有線或無線方式接收該搜救通報資訊。 The fire escape guidance and search and rescue assistance system according to claim 1, wherein the cloud server host further comprises a signal strength judging unit and a personnel location reporting unit; wherein the signal strength judging unit is based on the addressable smoke detectors Received Signal Strength Indication (RSSI, Received Signal Strength Indication) between the addressable trusted module in the test device and each user holding a portable mobile device, or the trusted module in the addressable smoke detection device The signal receiving time difference with each user holding the portable mobile device is used to analyze and calculate the number of people trapped by each user and the relative distance to be rescued information; and the personnel location notification unit is used to receive the The rescue information is combined with the geographic map data to generate a search and rescue notification information of the number of users with portable mobile devices and the real-time location of each floor in the building. The portable mobile device receives the search and rescue notification information in a wired or wireless manner from the cloud server host. 如請求項5所述之火場逃生導引及搜救輔助系統,其中該雲端伺服主機更包含一火場模擬單元,該火場模擬單元根據配置在該建築物中各樓層的多個該異常警報訊號中的偵測數據以及該地理圖資之結合,來分析計算以產生一火場特徵模擬分布圖並與該訊號強度判斷單元所產生的該待救援資訊結合,並由該人員定位通報單元分析運算以產生具有該火場特徵模擬分布圖之該搜救通報資訊。 The fire escape guidance and search and rescue assistance system according to claim 5, wherein the cloud server host further comprises a fire simulation unit, and the fire simulation unit is based on a plurality of the abnormal alarms arranged on each floor of the building The combination of the detection data in the signal and the geographic map data is analyzed and calculated to generate a simulated distribution map of the characteristics of the fire field, which is combined with the information to be rescued generated by the signal strength judging unit, and analyzed by the personnel positioning notification unit. The operation is performed to generate the search and rescue notification information with the simulated distribution map of the characteristics of the fire field. 如請求項5所述之火場逃生導引及搜救輔助系統,其中該訊號強度判斷單元更可根據該些可定址煙霧偵測裝置中的該定址受信模組與每一持有可攜式行動裝置之用戶之間的訊號接收時間差,並根據每一持有可攜式行動裝置之用戶的在一定時間內是否移動一預定距離,來判斷每一持有可攜式行動裝置之用戶的受困程度以產生一生命跡象感測資訊,並 由該人員定位通報單元分析運算以產生具有該生命跡象感測資訊之該搜救通報資訊。 The fire escape guidance and search and rescue assistance system according to claim 5, wherein the signal strength determination unit can further be based on the addressable trusted module in the addressable smoke detection devices and each portable mobile device The signal reception time difference between users of the device, and according to whether each user holding the portable mobile device moves a predetermined distance within a certain period of time, to determine the trapping of each user holding the portable mobile device level to generate a vital sign sensing information, and The personnel positioning notification unit analyzes and calculates to generate the search and rescue notification information with the life sign sensing information. 如請求項1所述之火場逃生導引及搜救輔助系統,其中該定址受信模組係為一低功率藍芽模組(Bluetooth Low Energy,BLE),該低功率藍芽模組被指定有一MAC位址以定義出該信標發送單元所配置的位置訊號,並且用以接收來自在其訊號區域中每一持有該可攜式行動裝置之用戶通過藍芽通訊方式進行監測,而該收發模組為一無線雙向收發器或者一有線雙向收發器。 The fire escape guidance and search and rescue assistance system as claimed in claim 1, wherein the address-receiving module is a low-power bluetooth module (Bluetooth Low Energy, BLE), and the low-power bluetooth module is designated with a The MAC address is used to define the location signal configured by the beacon sending unit, and is used to receive monitoring through bluetooth communication from each user holding the portable mobile device in its signal area, and the transceiver The module is a wireless two-way transceiver or a wired two-way transceiver. 一種提高火場存活率的資訊應用方法,適用於具有可攜式行動裝置之用戶,其步驟包括:提供如請求項1之火場逃生導引及搜救輔助系統;自該可攜式行動裝置通過連線接收該最佳化逃生路徑以及該搜救通報資訊之前述任一者之資料封包;自該可攜式行動裝置之一顯示螢幕查看該最佳化逃生路徑以及該搜救通報資訊之前述任一者之即時資訊;其中該最佳化逃生路徑之資訊包含動態圖像、路徑提示語音或者彈出提示框之前述任一者或以上。 An information application method for improving the survival rate of a fire scene, suitable for users with a portable mobile device, the steps of which include: providing the fire scene escape guidance and search and rescue assistance system as claimed in item 1; Connect to receive the data packet of the optimized escape route and the aforementioned one of the search and rescue notification information; view the optimized escape route and the aforementioned one of the search and rescue notification information from a display screen of the portable mobile device The real-time information of the above; wherein the information of the optimized escape route includes any one or more of the aforementioned dynamic images, route prompt voices or pop-up prompt boxes.
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