Movatterモバイル変換


[0]ホーム

URL:


CN113674498A - Fire monitoring system based on computer control - Google Patents

Fire monitoring system based on computer control
Download PDF

Info

Publication number
CN113674498A
CN113674498ACN202110967621.7ACN202110967621ACN113674498ACN 113674498 ACN113674498 ACN 113674498ACN 202110967621 ACN202110967621 ACN 202110967621ACN 113674498 ACN113674498 ACN 113674498A
Authority
CN
China
Prior art keywords
module
data
data processing
fire
processing module
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN202110967621.7A
Other languages
Chinese (zh)
Inventor
陈昂
杨兆宝
刘�东
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hohai University HHU
Original Assignee
Hohai University HHU
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Hohai University HHUfiledCriticalHohai University HHU
Priority to CN202110967621.7ApriorityCriticalpatent/CN113674498A/en
Publication of CN113674498ApublicationCriticalpatent/CN113674498A/en
Pendinglegal-statusCriticalCurrent

Links

Images

Classifications

Landscapes

Abstract

Translated fromChinese

本发明公开了一种基于计算机控制的火灾监控系统,包括数据采集模块、数据传输模块、数据处理模块、报警模块、供电模块和远程终端,数据采集模块包括数据存储单元、烟雾探测器、温度传感器和图像采集单元,烟雾探测器、温度传感器和图像采集单元分布在探测点区域,且与数据存储单元电连接,数据存储单元与数据处理模块电连接,且用于向数据处理模块发送数据采集信息,数据处理模块用于处理数据采集信息,且与报警模块电连接,供电模块为数据采集模块、数据传输模块、数据处理模块和报警模块提供电源,远程终端通过通讯模块与数据处理模块连接;优点是能及时发现火灾,自动巡检以及自动报警,可靠性较高。

Figure 202110967621

The invention discloses a fire monitoring system based on computer control, comprising a data acquisition module, a data transmission module, a data processing module, an alarm module, a power supply module and a remote terminal. The data acquisition module includes a data storage unit, a smoke detector and a temperature sensor. and the image acquisition unit, the smoke detector, the temperature sensor and the image acquisition unit are distributed in the detection point area, and are electrically connected with the data storage unit, the data storage unit is electrically connected with the data processing module, and is used for sending data acquisition information to the data processing module , the data processing module is used to process the data acquisition information and is electrically connected with the alarm module, the power supply module provides power for the data acquisition module, data transmission module, data processing module and alarm module, and the remote terminal is connected with the data processing module through the communication module; It can detect fire in time, automatically inspect and alarm, and has high reliability.

Figure 202110967621

Description

Fire monitoring system based on computer control
Technical Field
The invention relates to the technical field of fire monitoring, in particular to a fire monitoring system based on computer control.
Background
With the improvement of the living standard of residents, a large amount of electric equipment is increased, the electricity consumption of civil buildings is increased year by year, and the electric fire caused by electric circuits directly or indirectly is increased, so that how to prevent the fire from damaging social wealth and the safety of lives and properties of people is a large subject facing the current society.
The timely discovery and elimination of the fire hazard are important contents for fire research, and the research of fire detection aims to accurately discover the fire hazard as early as possible and give an alarm in time so as to take corresponding measures to control the occurrence and development of the fire. The present fire automatic alarm system in China is mainly applied to large warehouses, shopping malls, high-grade office buildings, hotels and some important places, the existing fire automatic alarm system adopts a bus type alarm control system with higher intelligent degree and a centralized acquisition and area alarm control mode, the existing fire automatic alarm system is a single fire automatic alarm detection device which is arranged in some residential areas and commercial buildings, the single sensor is adopted in the alarm detection device, the reliability of the single sensor is not high, and false alarm and missed alarm are easy to occur. Therefore, there is room for improvement.
Disclosure of Invention
In order to solve the defects in the prior art, the invention provides a fire monitoring system based on computer control, which can find fire in time, automatically inspect and alarm and has higher reliability.
The technical scheme adopted by the invention for solving the technical problems is as follows: a fire monitoring system based on computer control comprises a data acquisition module, a data transmission module, a data processing module, an alarm module, a power supply module and a remote terminal, the data acquisition module comprises a data storage unit, a smoke detector, a temperature sensor and an image acquisition unit, the smoke detector, the temperature sensor and the image acquisition unit are distributed in the detection point area, and is electrically connected with the data storage unit which is electrically connected with the data processing module, and is used for sending data acquisition information to the data processing module, the data processing module is used for processing the data acquisition information, the remote terminal is connected with the data processing module through the communication module.
The data storage unit comprises an RAM storage module and an ROM storage module, the RAM storage module is used for storing the operation logs of the smoke detector and the temperature sensor, and the ROM storage module is used for storing an operation program body used for controlling the operation track of the image acquisition unit. In the structure, the setting of the ROM storage module and the RAM storage module can lead the storage of the system to be classified, and the disorder of the stored information can not be caused.
When the temperature sensor detects that the temperature is higher than or equal to a temperature alarm threshold value or the smoke detector detects that smoke is generated, the data storage unit generates an early warning signal and sends the early warning signal to the data processing module, and the data processing module controls the image acquisition unit to carry out inspection so as to obtain a field real-time image. In this structure, the image acquisition unit is high definition digtal camera, and it can patrol and examine at certain extent according to data processing module's instruction, forms a closed-loop control like this, uses more automatic and nimble.
The data processing module adopts a deep learning algorithm to process the real-time image, judges whether a fire disaster occurs or exists in a region corresponding to the real-time image, alarms through the alarm module if the fire disaster occurs or exists in advance, continues to process the real-time image, and sends the real-time situation of the fire disaster to the remote terminal through the communication module after acquiring the real-time situation of the fire disaster; and if the fire disaster is not expected or no fire disaster exists, controlling the image acquisition unit to continuously inspect the detection point area.
The process of processing the real-time image by the deep learning algorithm is as follows:
s1: the data storage unit stores pictures of the confirmed fire and continuously shot videos and sends the pictures of the fire to the log file generation module;
s2: the log file generation module receives and stores the received pictures, and uploads a log folder to the data processing module every day, and the data processing module stores the information into the platform learning module after receiving the log folder;
s3: the platform learning module learns the received pictures, and the learned results are sent to the image recognition analysis module after learning, so that the next judgment is more rapid and accurate, an intelligent fire risk prediction model is generated by learning historical data, and the fire risk condition in the detection point area is predicted by combining the data of the existing smoke detector and the data of the temperature sensor.
The remote terminal comprises a computer, a display screen and a control keyboard, wherein the computer is connected with a vehicle management system, a fire extinguishing system, a surrounding precaution system and an intercom system through a network.
The communication module is a wifi module or a Bluetooth module or a wired serial port module.
Compared with the prior art, the invention has the advantages that: the data acquisition module comprises a data storage unit, a smoke detector, a temperature sensor and an image acquisition unit, wherein the smoke detector is used for detecting smoke concentration information of a detection point area, the temperature sensor is used for detecting temperature information of the detection point area, the image acquisition unit is used for acquiring image information of the detection point area, the detected acquisition information is respectively sent to the data storage unit for storage, the data storage unit is sent to the data processing module for processing, and once a processing result exceeds a threshold value, the alarm module is controlled to give an alarm; the remote terminal is used for communicating with the data processing module, realizes a fire detection technology integrating a sensor, a machine and image processing, has the characteristics of non-contact detection, is not limited by environmental conditions such as space height, air velocity, thermal barrier, dust, humidity and the like, and can perform early warning at the initial stage of fire occurrence so as to remind related personnel to fight the fire.
Drawings
Fig. 1 is a schematic block diagram of the present invention.
Detailed Description
The present invention will be described in further detail with reference to the following drawings and examples, but the present invention is not limited thereto.
Example (b): as shown in the figure, the fire monitoring system based on computer control comprises a data acquisition module 1, adata transmission module 2, a data processing module 3, an alarm module 4, apower supply module 5 and a remote terminal 6, wherein the data acquisition module 1 comprises a data storage unit 11, asmoke detector 12, atemperature sensor 13 and animage acquisition unit 14, thesmoke detector 12, thetemperature sensor 13 and theimage acquisition unit 14 are distributed in a detection point area and are electrically connected with the data storage unit 11, the data storage unit 11 is electrically connected with the data processing module 3 and is used for sending data acquisition information to the data processing module 3, the data processing module 3 is used for processing the data acquisition information and is electrically connected with the alarm module 4, thepower supply module 5 provides power for the data acquisition module 1, thedata transmission module 2, the data processing module 3 and the alarm module 4, the remote terminal 6 is connected with the data processing module 3 through acommunication module 7.
The data storage unit 11 includes a RAM storage module and a ROM storage module, the RAM storage module is used for storing the operation logs of thesmoke detector 12 and thetemperature sensor 13, and the ROM storage module is used for storing the operation program body for controlling the operation track of theimage acquisition unit 14. In the structure, the setting of the ROM storage module and the RAM storage module can lead the storage of the system to be classified, and the disorder of the stored information can not be caused.
When thetemperature sensor 13 detects that the temperature is higher than or equal to the temperature alarm threshold or thesmoke detector 12 detects that smoke is generated, the data storage unit 11 generates an early warning signal to the data processing module 3, and the data processing module 3 controls theimage acquisition unit 14 to perform inspection so as to obtain a real-time image of a site. In this structure,image acquisition unit 14 is high definition digtal camera, and it can patrol and examine at certain extent according to data processing module 3's instruction, forms a closed-loop control like this, uses more automatic and nimble.
The data processing module 3 processes the real-time image by adopting a deep learning algorithm, judges whether a fire disaster occurs in a corresponding area of the real-time image or not or whether a fire disaster exists in the corresponding area of the real-time image, alarms through the alarm module 4 if the fire disaster occurs or the fire disaster exists in advance, continues to process the real-time image, and sends the real-time situation of the fire disaster to the remote terminal 6 through thecommunication module 7 in real time after acquiring the real-time situation of the fire disaster; if no fire is expected or no fire exists, theimage acquisition unit 14 is controlled to continuously inspect the detection point area.
The process of processing the real-time image by the deep learning algorithm is as follows:
s1: the data storage unit 11 stores pictures of the confirmed fire and continuously shot videos and sends the pictures of the fire to the log file generation module;
s2: the log file generation module receives and stores the received pictures, and uploads a log folder to the data processing module 3 every day, and the data processing module 3 stores the information into the platform learning module after receiving the log folder;
s3: the platform learning module learns the received pictures, and the learned results are sent to the image recognition analysis module after learning, so that the next judgment is more rapid and accurate, an intelligent fire risk prediction model is generated by learning historical data, and the fire risk condition in the detection point area is predicted by combining the data of the existingsmoke detector 12 and thetemperature sensor 13.
The remote terminal 6 comprises a computer, a display screen and a control keyboard, and the computer is connected with a vehicle management system, a fire extinguishing system, a surrounding precaution system and an intercom system through a network.
Thecommunication module 7 is a wifi module or a bluetooth module or a wired serial port module.
It should be noted that the above mentioned embodiments are only preferred embodiments of the present invention, and are not intended to limit the scope of the present invention, and the present invention may be modified in materials and structures, or replaced with technical equivalents. Therefore, structural equivalents made by using the description and drawings of the present invention or by directly or indirectly applying to other related arts are also encompassed within the scope of the present invention.

Claims (7)

1. A fire monitoring system based on computer control is characterized in that: comprises a data acquisition module, a data transmission module, a data processing module, an alarm module, a power supply module and a remote terminal, the data acquisition module comprises a data storage unit, a smoke detector, a temperature sensor and an image acquisition unit, the smoke detector, the temperature sensor and the image acquisition unit are distributed in the detection point area, and is electrically connected with the data storage unit which is electrically connected with the data processing module, and is used for sending data acquisition information to the data processing module, the data processing module is used for processing the data acquisition information, the remote terminal is connected with the data processing module through the communication module.
2. A computer-based fire monitoring system according to claim 1, wherein: the data storage unit comprises an RAM storage module and an ROM storage module, the RAM storage module is used for storing the operation logs of the smoke detector and the temperature sensor, and the ROM storage module is used for storing an operation program body used for controlling the operation track of the image acquisition unit.
3. A computer-based fire monitoring system according to claim 2, wherein: when the temperature sensor detects that the temperature is higher than or equal to a temperature alarm threshold value or the smoke detector detects that smoke is generated, the data storage unit generates an early warning signal and sends the early warning signal to the data processing module, and the data processing module controls the image acquisition unit to carry out inspection so as to obtain a field real-time image.
4. A computer-based fire monitoring system according to claim 3, wherein: the data processing module adopts a deep learning algorithm to process the real-time image, judges whether a fire disaster occurs or exists in a region corresponding to the real-time image, alarms through the alarm module if the fire disaster occurs or exists in advance, continues to process the real-time image, and sends the real-time situation of the fire disaster to the remote terminal through the communication module after acquiring the real-time situation of the fire disaster; and if the fire disaster is not expected or no fire disaster exists, controlling the image acquisition unit to continuously inspect the detection point area.
5. A computer-based fire monitoring system according to claim 4, wherein: the process of processing the real-time image by the deep learning algorithm is as follows:
s1: the data storage unit stores pictures of the confirmed fire and continuously shot videos and sends the pictures of the fire to the log file generation module;
s2: the log file generation module receives and stores the received pictures, and uploads a log folder to the data processing module every day, and the data processing module stores the information into the platform learning module after receiving the log folder;
s3: the platform learning module learns the received pictures, and the learned results are sent to the image recognition analysis module after learning, so that the next judgment is more rapid and accurate, an intelligent fire risk prediction model is generated by learning historical data, and the fire risk condition in the detection point area is predicted by combining the data of the existing smoke detector and the data of the temperature sensor.
6. A computer-based fire monitoring system according to claim 1, wherein: the remote terminal comprises a computer, a display screen and a control keyboard, wherein the computer is connected with a vehicle management system, a fire extinguishing system, a surrounding precaution system and an intercom system through a network.
7. A computer-based fire monitoring system according to claim 1, wherein: the communication module is a wifi module or a Bluetooth module or a wired serial port module.
CN202110967621.7A2021-08-232021-08-23Fire monitoring system based on computer controlPendingCN113674498A (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
CN202110967621.7ACN113674498A (en)2021-08-232021-08-23Fire monitoring system based on computer control

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
CN202110967621.7ACN113674498A (en)2021-08-232021-08-23Fire monitoring system based on computer control

Publications (1)

Publication NumberPublication Date
CN113674498Atrue CN113674498A (en)2021-11-19

Family

ID=78545076

Family Applications (1)

Application NumberTitlePriority DateFiling Date
CN202110967621.7APendingCN113674498A (en)2021-08-232021-08-23Fire monitoring system based on computer control

Country Status (1)

CountryLink
CN (1)CN113674498A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
CN114755949A (en)*2022-03-212022-07-15西北大学Rural wisdom remote sensing monitored control system based on human settlements environment
CN116363826A (en)*2023-03-312023-06-30三一专用汽车有限责任公司Work machine firing processing method, device, equipment, medium and work machine

Cited By (2)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
CN114755949A (en)*2022-03-212022-07-15西北大学Rural wisdom remote sensing monitored control system based on human settlements environment
CN116363826A (en)*2023-03-312023-06-30三一专用汽车有限责任公司Work machine firing processing method, device, equipment, medium and work machine

Similar Documents

PublicationPublication DateTitle
US9978255B1 (en)Alarm probability
CN103488154B (en)A kind of substation operation environment remote comprehensive monitoring system and inter-linked controlling method thereof
US20250006035A1 (en)Intelligent emergency response for multi-tenant dwelling units
CN103779960B (en)Intelligence switching station comprehensive monitoring system
WO2020181851A1 (en)Zigbee wireless network-based warehouse monitoring system
CN104079874A (en)Security and protection integrated system and method based on Internet of Things technology
CN103439954B (en)A kind of warehouse environment control intelligent system
CN204189014U (en)A kind of computer room monitoring, warning and disposal system ensemble
CN107316430A (en)Power distribution room switching station safety pre-warning system
CN103325225A (en)Embedded wireless computer room monitoring system and monitoring method therefor
CN113674498A (en)Fire monitoring system based on computer control
CN118250652A (en)Fire disaster site internet of things sensing system
CN206975532U (en)warehouse monitoring system based on wireless GSM
CN112102583A (en)Intelligent building system based on big data
CN108898781A (en)A kind of intelligent fire Internet of things system based on public cloud
CN106297168A (en)A kind of Intelligent building monitoring system and method
CN118807152A (en) A charging pile fire protection system and method based on Internet of Things technology
CN118644945A (en) A multi-floor monitoring fire emergency alarm control system and control method thereof
CN113613100A (en)Tunnel monitoring and early warning system and method based on Internet of things
CN118196992A (en)Fire alarm
CN117746563A (en) A fire rescue system with life detection
CN102262395A (en) Multi-hazard detection and control system and method thereof
CN206906860U (en)A kind of power distribution room intelligent monitoring and controlling device
CN116246445A (en) A warehouse security multi-source IoT data early warning method based on knowledge graph
CN205942830U (en)Intelligent security access control system

Legal Events

DateCodeTitleDescription
PB01Publication
PB01Publication
WD01Invention patent application deemed withdrawn after publication

Application publication date:20211119

WD01Invention patent application deemed withdrawn after publication

[8]ページ先頭

©2009-2025 Movatter.jp