Emergency alarm system

By introducing an environmental information acquisition module and the LoRaWAN communication protocol into the emergency alarm system, real-time transmission of environmental information at the alarm location is achieved, solving the problem of not being able to understand the on-site situation in a timely manner in existing technologies and improving the efficiency of emergency response.

CN223526775UActive Publication Date: 2025-11-07BEIJING ZHONGKE MEDICAL INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202422864365.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-11-07
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

Existing emergency alarm devices cannot be linked with environmental information acquisition modules, and cannot transmit environmental information from the alarm site to the safety management center, resulting in management personnel being unable to understand the situation on site in a timely manner and reducing the efficiency of emergency response.

Method used

An emergency alarm system was designed. By mapping the device information of the alarm unit to the protocol address of the environmental information acquisition module, the system can collect and transmit environmental information at the alarm location, including images, gas concentration, temperature and humidity, and location information. The LoRaWAN communication protocol is used for long-distance data transmission to improve response speed.

Benefits of technology

Safety personnel can understand the situation on site immediately, react quickly, improve the efficiency of handling emergencies, and enhance the responsiveness of safety management.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an emergency alarm system, which comprises an alarm module, an environment information acquisition module and a management module, the alarm module comprises an alarm unit and a control unit; the control unit is used for determining equipment information of the alarm unit according to the received alarm information, transmitting the equipment information to the management module and receiving protocol address information of the environment information acquisition module corresponding to the equipment information; the control unit is further used for controlling the environment information collection module matched with the protocol address information to collect environment information according to the protocol address information and transmitting the environment information to the management module. By adopting the above technical scheme, in case of an emergency, according to the corresponding relationship between the equipment information of the alarm unit and the protocol address of the environment information acquisition module, the environment information of the alarm site is acquired and transmitted to the management module, so that safety personnel can know the field condition at the first time and make a response quickly, and the safety of the safety personnel is improved. The response time is greatly shortened, and the emergency processing efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to emergency alarm technical field especially relates to an emergency alarm system. BACKGROUND

[0002] In the practice of safety management, one-key emergency alarm device plays a vital role. These devices are usually carefully arranged in the working area of the help post, and the position is relatively hidden, so as to ensure that the alarm can be triggered quickly and not easily detected when encountering an emergency. Once the alarm button is pressed, the help information will be immediately transmitted to the safety management center, and the center will intervene immediately, aiming to minimize the potential damage caused by the event.

[0003] The existing alarm device cannot be linked with the environment information collection module, and cannot transmit the environment information of the alarm site to the safety management center. The management personnel cannot understand the on-site situation in the first time, which greatly limits the response speed of the alarm system and reduces the processing efficiency of the emergency. UTILITY MODEL CONTENT

[0004] The utility model provides an emergency alarm system, when encountering an emergency, according to the corresponding relationship between the equipment information of alarm unit and the protocol address of environment information collection module, the environment information of alarm place is collected and transmitted to management module, so that the safety personnel can understand the on-site situation in the first time, and make a quick response, greatly shorten the response time, improve the emergency processing efficiency.

[0005] According to an aspect of the utility model, an emergency alarm system is provided, which comprises an alarm module, an environment information collection module and a management module; the alarm module comprises an alarm unit and a control unit;

[0006] The alarm unit comprises an alarm information output end; the control unit comprises an alarm information receiving end, an equipment information output end, a protocol address receiving end, a collection instruction output end, a first environment information receiving end and an environment information transmission end; the environment information collection module comprises a collection instruction receiving end and an environment information output end; the safety management module comprises an equipment information receiving end, a protocol address output end and a second environment information receiving end;

[0007] The alarm information receiving end is connected with the alarm information output end, the equipment information output end is connected with the equipment information receiving end, the protocol address receiving end is connected with the protocol address output end, and the control unit is used for determining the equipment information of the alarm unit according to the received alarm information, transmitting the equipment information to the management module, and receiving the protocol address information of the environment information collection module corresponding to the equipment information;

[0008] The collection instruction output end is connected with the collection instruction receiving end, the first environment information receiving end is connected with the environment information output end, and the environment information transmission end is connected with the second environment information receiving end; the control unit is further used for controlling the environment information collection module matched with the protocol address information to collect environment information according to the protocol address information, and transmitting the environment information to the management module.

[0009] Optionally, the environment information collection module comprises an image collection unit, and the environment information comprises environment image information.

[0010] The management module further comprises a first display unit, and the first display unit is used for displaying the environment image information received by the second environment information receiving end.

[0011] Optionally, the environment information collection module comprises a gas concentration collection unit, and the environment information comprises environment gas concentration information.

[0012] The management module further comprises a first display unit, and the first display unit is used for displaying the environment gas concentration information received by the second environment information receiving end.

[0013] Optionally, the gas concentration collection unit comprises at least one of a carbon dioxide concentration collection unit, a carbon monoxide concentration collection unit and a formaldehyde concentration collection unit.

[0014] Optionally, the environment information collection module comprises a temperature and humidity collection unit, and the environment information comprises environment temperature and humidity information.

[0015] The management module further comprises a first display unit, and the first display unit is used for displaying the environment temperature and humidity information received by the second environment information receiving end.

[0016] Optionally, the environment information collection module comprises a position collection unit, and the environment information comprises position information.

[0017] The management module further comprises a first display unit, and the first display unit is used for displaying the position information received by the second environment information receiving end.

[0018] Optionally, the alarm unit comprises an alarm button and an audible and visual alarm subunit.

[0019] The alarm button comprises the alarm information output end.

[0020] The control unit further comprises an alarm instruction output end, the acousto-optic alarm sub-unit comprises an alarm instruction receiving end, the alarm instruction output end is connected with the alarm instruction receiving end, and the control module is further used for controlling the acousto-optic alarm sub-unit to perform acousto-optic alarm after receiving the alarm information.

[0021] Optionally, the alarm module further comprises a second display unit.

[0022] The second display unit comprises a third environment information receiving end, the third environment information receiving end is connected with the environment information transmission end, and is used for displaying the environment information.

[0023] Optionally, the alarm module further comprises a shell.

[0024] The alarm unit comprises an alarm button, and the alarm button is arranged on the shell.

[0025] Optionally, a charging interface is arranged on the shell.

[0026] The alarm module further comprises a charging battery, and the charging battery is electrically connected with the charging interface.

[0027] In an emergency, the alarm unit sends alarm information to the control unit, the control unit determines the device information of the alarm unit according to the alarm information, and sends the device information to the management module, the management module determines the protocol address of the environment information acquisition module associated with the alarm unit according to the device information and returns the control unit, the control unit controls the environment information acquisition module to collect the environment information of the alarm location according to the protocol address, and transmits the environment information to the management module. According to the corresponding relationship between the device information of the alarm unit and the protocol address of the environment information acquisition module, the above technical scheme realizes the collection and transmission of the environment information of the alarm location to the management module, so that the safety personnel can understand the on-site situation in the first time, quickly respond, greatly shorten the response time, and improve the emergency handling efficiency.

[0028] It should be understood that the content described in this part is not intended to identify the key or important features of the embodiments of the utility model, nor is it used to limit the scope of the utility model. Other features of the utility model will become easy to understand through the following description. BRIEF DESCRIPTION OF DRAWINGS

[0029] In order to more clearly illustrate the technical scheme in the embodiments of the utility model, the drawings needed in the embodiment description will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can also be obtained according to these drawings without creative labor.

[0030] Figure 1 is a structure schematic view of a first emergency alarm system according to an embodiment of the present application;

[0031] Figure 2 is a structure schematic view of a second emergency alarm system according to an embodiment of the present application;

[0032] Figure 3 is a structure schematic view of a third emergency alarm system according to an embodiment of the present application;

[0033] Figure 4 is a structure schematic view of a fourth emergency alarm system according to an embodiment of the present application;

[0034] Figure 5 is a structure schematic view of a fifth emergency alarm system according to an embodiment of the present application;

[0035] Figure 6 is a structure schematic view of a sixth emergency alarm system according to an embodiment of the present application;

[0036] Figure 7 is a structure schematic view of a seventh emergency alarm system according to an embodiment of the present application;

[0037] Figure 8 is a structure schematic view of a control module of an emergency alarm system according to an embodiment of the present application. DETAILED DESCRIPTION

[0038] In order to make the personnel in the technical field better understand the present application scheme, the technical scheme in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by the person skilled in the art without creative labor should belong to the scope of protection of the present application.

[0039] It should be noted that the terms "first", "second", and the like in the description and in the claims of the utility model and the above drawings are used to distinguish similar objects and do not have to be used to describe a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so that the embodiments of the utility model described herein can be implemented in an order other than those illustrated or described herein. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion, for example, a process, method, system, product or device including a series of steps or units does not have to be limited to the clearly listed steps or units, but can include other steps or units not clearly listed or inherent to these processes, methods, products or devices.

[0040] Figure 1 It is the structural schematic diagram of the first emergency alarm system provided according to the utility model embodiments, and the embodiment can be applicable to the user through alarm module when alarming in emergency, and the manager understands the situation of alarm site through management module. As shown in Figure 1 The alarm module 1 includes alarm unit 11 and control unit 12;Alarm unit 11 includes alarm information output end 111;Control unit 12 includes alarm information receiving end 121, equipment information output end 122, protocol address receiving end 123, acquisition instruction output end 124, first environment information receiving end 125 and environment information transmission end 126;Environment information acquisition module 2 includes acquisition instruction receiving end 224 and environment information output end 225;Safety management module 3 includes equipment information receiving end 322, protocol address output end 323 and second environment information receiving end 326;Alarm information receiving end 121 is connected with alarm information output end 111, equipment information output end 122 is connected with equipment information receiving end 322, protocol address receiving end 123 is connected with protocol address output end 323, control module 1 is used to determine the equipment information of alarm unit 11 according to the received alarm information, and the equipment information is transmitted to management module 3, and the protocol address information of environment information acquisition module 2 corresponding to the equipment information is received;Acquisition instruction output end 124 is connected with acquisition instruction receiving end 224, first environment information receiving end 125 is connected with environment information output end 225, and environment information transmission end 126 is connected with second environment information receiving end 326;Control module 1 is also used to control environment information acquisition module 2 matched with protocol address information to collect environment information according to protocol address information, and transmit environment information to management module 3.

[0041] Specifically, as Figure 1As shown, the alarm module 1 can be a one-key emergency alarm device. When an emergency occurs, a user can input alarm information through the alarm unit 11. The alarm information output end 111 is connected with the alarm information receiving end 121. The alarm unit 11 transmits the alarm information to the control unit 12. The control unit 12 determines the device information of the alarm unit 11 according to the received alarm information. The device information can be the device ID (Identity Document) of the alarm unit 11. The device information is transmitted to the management module 3 through the connection between the device information output end 122 and the device information receiving end 322. The management module 3 can be a security management center. The management module 3 pre-stores the correspondence between the device information of the alarm unit 11 and the protocol address information of the environmental information collection module 2. The management module 3 can query the protocol address information of the environmental information collection module 2 corresponding to the alarm unit 11 according to the device information of the alarm unit 11, wherein the protocol address information refers to the Internet Protocol Address (IP Address). The protocol address information is transmitted to the control unit 12. The control unit 12 sends the collection instruction to the environmental information collection module 2 according to the protocol address information, controls the environmental information collection module 2 matched with the protocol address information to collect the environmental information, and receives the environmental information collected by the environmental information collection module 2 through the connection between the first environmental information receiving end 125 and the environmental information output end 225. The environmental information transmission end 126 is connected with the second environmental information receiving end 326 to transmit the environmental information to the management module 3, so that the management personnel can understand the situation of the alarm site through the management module 3. The environmental information can be the environmental condition information of the alarm site.

[0042] It should be noted that the control module 1 and the management module 3 communicate through the LoRaWAN base station. The LoRaWAN base station is a wireless communication gateway based on the LoRaWAN communication protocol, which can transmit the environmental information of the alarm site through wireless signals. The LoRaWAN communication protocol can perform long-distance data transmission, covering a distance of 2-4 kilometers in an outdoor environment. That is, the effective data transmission distance between the alarm module 1 and the management module 3 is farther, the monitoring coverage distance is wider, and the safety management efficiency is improved. Since the LoRaWAN communication protocol has low power consumption characteristics, the current consumption of the alarm module 1 in standby or sleep state is very low, thereby enabling the alarm module 1 to operate for a long time.

[0043] The embodiment of the utility model discloses, in the emergency through alarm unit to control unit sends alarm information, and control unit determines the equipment information of alarm unit according to alarm information, and sends the equipment information to management module, and management module determines the protocol address of environmental information acquisition module associated with alarm unit through equipment information and returns control unit, and control unit controls environmental information acquisition module to gather the environmental information of alarm place according to the protocol address, and environmental information is transmitted to management module. Adopt the above technical scheme, according to the corresponding relation of the equipment information of alarm unit and the protocol address of environmental information acquisition module, alarm place environmental information is gathered and is transmitted to management module, so that security personnel can understand the on-site situation in the first time, and make a quick response, greatly shorten the response time, improve emergency processing efficiency.

[0044] Figure 2 It is the structure diagram of the second emergency alarm system according to the embodiment of the utility model, on the basis of above embodiment, the utility model embodiment is to the collection of environmental image information is explained. As shown in Figure 2 The optional environmental information acquisition module 2 includes an image acquisition unit 21, and the environmental information includes environmental image information. The management module 3 further includes a first display unit 31, and the first display unit 31 is used to display the environmental image information received by the second environmental information receiving end 326.

[0045] Specifically, the image acquisition unit 21 can be a camera. When an emergency occurs, the control unit 12 can send the equipment information of the alarm unit 11 sending the alarm information to the management module 3. The management module 3 determines the protocol address of the image acquisition unit 21 associated with the alarm unit 11 through the equipment information and returns to the control unit 12. The control unit 12 controls the image acquisition unit 21 to collect the environmental image information of the alarm location according to the protocol address, and transmits the environmental image information to the first display unit 31 to present the environmental image information to the security management personnel.

[0046] For example, the alarm module 1 can be placed on the desktop of the office, and the alarm module 1 can be associated with the image acquisition unit 21 around the office. When an emergency occurs, such as a fire, the user can alarm through the alarm unit 11. The security management personnel can view the real-time picture around the office through the management module 3, so that the security management personnel can understand the on-site situation.

[0047] The embodiment of the utility model associates the image acquisition unit with the alarm module, and displays the environmental image information through the first display unit, captures the real-time video and image data of the alarm location, and provides strong support for security monitoring and emergency response.

[0048] Figure 3It is the third emergency alarm system structure diagram provided by the embodiment of the utility model. The embodiment of the utility model, the collection of the gas concentration of the environmental information collection module is explained. Figure 3 As shown in the figure, the environmental information collection module 2 includes a gas concentration collection unit 22, and the environmental information includes environmental gas concentration information; the management module 3 further includes a first display unit 31, and the first display unit 31 is used for displaying the environmental gas concentration information received by the second environmental information receiving end 326.

[0049] Specifically, the gas concentration collection unit 22 can be a gas concentration sensor, and the gas concentration sensor is a device for detecting the concentration of a specific gas in the environment. When an emergency occurs, the control unit 12 can send the device information of the alarm unit 11 issuing the alarm information to the management module 3, the management module 3 determines the protocol address of the gas concentration collection unit 22 associated with the alarm unit 11 through the device information and returns to the control unit 12, and the control unit 12 controls the gas concentration collection unit 22 to collect the environmental gas concentration information of the alarm site according to the protocol address, and transmits the environmental gas concentration information to the first display unit 31 to present the environmental gas concentration information to the safety management personnel.

[0050] For example, the gas concentration collection unit 22 can collect the gas concentration, and the alarm module 1 can be placed on the desktop of the office. When an emergency occurs, such as a fire, the user can alarm through the alarm unit 11, the control unit 12 can control the gas concentration sensor to detect the gas concentration information in the environment and transmit the gas concentration information to the management module 3, and the safety management personnel can view the gas concentration information in the office through the management module 3, so that the safety management personnel can understand the gas concentration situation on the scene.

[0051] It can be understood that the concentration of environmental fine particulate matter (such as PM2.5) will increase when a fire occurs, so the environmental information collection module 2 can also include a fine particulate matter collection unit according to the needs, and the PM2.5 concentration fine particulate matter collection unit in the alarm site can be a fine particulate matter sensor.

[0052] The embodiment of the utility model associates the gas concentration collection unit with the alarm module, and displays the gas concentration information through the first display unit, detects the concentration condition of the alarm site, so that the safety management personnel can take countermeasures, and further improves the emergency handling efficiency.

[0053] Referring to Figure 3 , the embodiment of the utility model further explains the type of collected gas concentration on the basis of the above-mentioned embodiment. The gas concentration collection unit 22 includes at least one of a carbon dioxide concentration collection unit, a carbon monoxide concentration collection unit, and a formaldehyde concentration collection unit.

[0054] Specifically, the carbon dioxide concentration acquisition unit can be a carbon dioxide concentration sensor, which is a device for detecting the carbon dioxide concentration in the environment, and can provide accurate carbon dioxide concentration data. The carbon monoxide concentration acquisition unit can be a carbon monoxide concentration sensor, which is a device for detecting the carbon monoxide concentration in the environment, and can provide accurate carbon monoxide concentration data. The formaldehyde concentration acquisition unit can be a formaldehyde concentration sensor, which is a device for detecting the formaldehyde concentration in the air, and can provide accurate formaldehyde concentration data.

[0055] The gas concentration acquisition unit 22 can be at least one of them, for example, the gas concentration acquisition unit 22 can only set the carbon dioxide concentration acquisition unit to collect carbon dioxide concentration, or only set the carbon monoxide concentration acquisition unit to collect carbon monoxide concentration, or only set the formaldehyde concentration acquisition unit to collect formaldehyde concentration information; The gas concentration acquisition unit 22 can also set the carbon dioxide concentration acquisition unit and the carbon monoxide concentration acquisition unit to collect carbon dioxide concentration and carbon monoxide concentration at the same time, or set the carbon dioxide concentration acquisition unit and the formaldehyde concentration acquisition unit to collect carbon dioxide concentration and formaldehyde concentration at the same time, or set the carbon monoxide concentration acquisition unit and the formaldehyde concentration acquisition unit to collect carbon monoxide concentration and formaldehyde concentration at the same time. The gas concentration acquisition unit 22 can also set the carbon dioxide concentration acquisition unit, the carbon monoxide concentration acquisition unit and the formaldehyde concentration acquisition unit at the same time, and collect carbon dioxide concentration, carbon monoxide concentration and formaldehyde concentration at the same time. The specific setting of several types of gas concentration acquisition units 22 can be set according to the actual situation, which is not limited here.

[0056] For example, the gas concentration acquisition unit 22 includes a carbon dioxide concentration acquisition unit. In the event of an emergency, such as a fire, the user alarms through the alarm unit 11, and the control unit 12 can control the carbon dioxide concentration acquisition unit to detect the carbon dioxide concentration information in the environment and transmit the gas concentration information to the management module 3. The safety manager can indirectly assess the burning intensity and scale of the fire according to the change of carbon dioxide concentration, thereby providing an important reference for fire fighting and rescue.

[0057] When a fire occurs, the carbon monoxide concentration produced by incomplete combustion will rise rapidly. The gas concentration acquisition unit 22 includes a carbon monoxide concentration acquisition unit, which can monitor the carbon monoxide concentration in real time. The safety manager can discover the dangerous area near the fire source in time according to the change of carbon monoxide concentration, and give a pre-warning to the personnel, so as to avoid them entering or staying in the high concentration area, thereby protecting the life safety of the personnel.

[0058] Formaldehyde is a toxic and harmful gas, which can cause poisoning after being inhaled by human body. When a fire occurs, building materials, furniture and the like can release a large amount of formaldehyde. By detecting the formaldehyde concentration and issuing a warning to the personnel, the personnel can be prevented from entering or staying in the high-concentration area, and the risk of poisoning can be reduced.

[0059] In the embodiment of the utility model, the gas concentration collecting unit 22 includes at least one of the carbon dioxide concentration collecting unit, the carbon monoxide concentration collecting unit and the formaldehyde concentration collecting unit, the gas concentration of multiple kinds is monitored, the gas condition of the alarm site is understood from multiple aspects, and then the danger of the environment of the alarm site is evaluated, so that the safety management personnel can timely adjust the rescue strategy and the protection measures, and the emergency event processing efficiency is further improved.

[0060] Figure 4 It is a structural schematic diagram of a fourth emergency alarm system according to the embodiment of the utility model. The embodiment of the utility model explains the collection of the environment temperature and humidity information by the environment information collecting module. As shown in Figure 4 The environment information collecting module 2 includes the temperature and humidity collecting unit 23, and the environment information includes the environment temperature and humidity information; the management module 3 further includes the first display unit 31, and the first display unit 31 is used for displaying the environment temperature and humidity information received by the second environment information receiving end 326.

[0061] Specifically, the temperature and humidity collecting unit 23 can be a temperature and humidity sensor, when an emergency occurs, the control unit 12 can send the device information of the alarm unit 11 issuing the alarm information to the management module 3, the management module 3 determines the protocol address of the temperature and humidity collecting unit 23 associated with the alarm unit 11 through the device information and returns to the control unit 12, the control unit 12 controls the temperature and humidity collecting unit 23 to collect the environment temperature and humidity information of the alarm site according to the protocol address, and transmits the environment temperature and humidity information to the first display unit 31 to present the environment temperature and humidity information to the safety management personnel.

[0062] For example, the alarm module 1 can be placed on the desktop of an office, the alarm module 1 can be associated with the temperature and humidity unit 23, when an emergency occurs, for example, a fire occurs, the user alarms through the alarm unit 11, the safety management personnel can check the temperature and humidity information of the alarm site through the management module 3, so that the safety management personnel can understand the temperature and humidity condition of the site, and the safety management personnel can adjust the fire extinguishing strategy according to the specific situation. For example, in a high-temperature and dry environment, more rapid and decisive fire extinguishing measures can be taken to prevent the fire from expanding.

[0063] The utility model embodiment through setting up temperature and humidity collection unit monitoring temperature change, can assist in judging the position of fire source and the direction of fire spread when fire breaks out. This helps the safety management personnel to locate the fire source more quickly, so as to make more effective fire extinguishing strategy.

[0064] Figure 5 It is the structural schematic diagram of the fifth kind of emergency alarm system provided by the utility model embodiment. The utility model embodiment, the collection of position information by the environmental information collection module is explained. The environmental information collection module 2 includes a position collection unit 24, and the environmental information includes position information;The management module 3 further includes a first display unit 31, and the first display unit 31 is used to display the position information received by the second environmental information receiving end 326.

[0065] Specifically, the position collection unit 24 can be a GPS locator, and when an emergency occurs, the control unit 12 can send the device information of the alarm unit 11 sending the alarm information to the management module 3, the management module 3 determines the protocol address of the position collection unit 24 associated with the alarm unit 11 through the device information and returns to the control unit 12, the control unit 12 controls the position collection unit 24 according to the protocol address, collects the position information of the alarm site, and transmits the position information to the first display unit 31 to present the position information to the safety management personnel.

[0066] Exemplarily, the emergency alarm system has a positioning function, when an emergency occurs, for example, when a fire breaks out, the user alarms through the alarm unit 11, and the safety management personnel can check the position information of the alarm site through the management module 3, so that the safety management personnel knows the specific position of the fire, and can quickly and accurately handle the fire.

[0067] The utility model embodiment, the environmental information collection module includes a position collection unit, so that the one-key emergency alarm system has a positioning function, and the processing efficiency for emergency events is further improved.

[0068] Figure 6 It is the structural schematic diagram of the sixth kind of emergency alarm system provided by the utility model embodiment. The utility model embodiment, the utility model embodiment explains the audible and light alarm subunit of the control system. As shown in Figure 6 The alarm unit includes an alarm button 112 and an audible and light alarm subunit 113;The alarm button 112 includes an alarm information output end 111;The control unit 12 further includes an alarm instruction output end 127, the audible and light alarm subunit 113 includes an alarm instruction receiving end 114, the alarm instruction output end 127 is connected with the alarm instruction receiving end 114, and the control module 12 is further used to control the audible and light alarm subunit 113 to carry out audible and light alarm after receiving the alarm information.

[0069] Specifically, the audible and visual alarm subunit 113 can be components such as a speaker and LED lights. The user transmits alarm information to the control unit 12 through the alarm case 112. The control unit 12 outputs an alarm command based on the alarm information and transmits it to the audible and visual alarm subunit 113 to control the audible and visual alarm subunit 113 to emit warning signals in the form of sound and light.

[0070] For example, when an emergency occurs, the user presses the alarm button 112, and the alarm module 1 can flash a red indicator light and emit a piercing buzzing sound to quickly attract the attention of people around and remind them to take action to protect their own and others' personal safety.

[0071] Figure 7 This is a structural schematic diagram of the seventh emergency alarm system provided according to an embodiment of the present invention. The alarm module 1 of this embodiment further includes a second display unit 13; the second display unit 13 includes a third environmental information receiving terminal 131, which is connected to an environmental information transmission terminal 126 and is used to display environmental information.

[0072] Specifically, the second display unit 13 can be an LED display screen, which can be used to display environmental image information, environmental gas concentration information, environmental temperature and humidity information, and location information collected by the environmental information acquisition module 2. This allows users to directly understand the environmental information in their surroundings through the control module.

[0073] For example, the alarm module 1 can be placed on a desk, and the user can see environmental image information, environmental gas concentration information, environmental temperature and humidity information, and location information in the office in real time through the second display unit 13.

[0074] In addition, to enhance the practicality of alarm module 1, a timer can be installed within it, enabling it to function as a timer and displaying the time information via the second display unit 13. A sensor for detecting the battery level of control module 1 can also be added to monitor this information and display it on the second display unit 13, allowing users to monitor battery status and recharge the battery in a timely manner.

[0075] Figure 8 This is a schematic diagram of the structure of a control module for an emergency alarm system according to an embodiment of the present invention. This embodiment of the present invention describes the structure of the control module. Figure 6 , Figure 7 and Figure 8 As shown, the alarm module 1 also includes a housing 4; the alarm unit 11 includes an alarm button 112, which is disposed on the housing 4.

[0076] Specifically, such as Figure 8As shown, the alarm button 112 can be a red alarm button, in an emergency, the user often needs to quickly find and press the alarm button, therefore, setting the alarm button 112 on the shell 4 and using a red alarm button can improve visibility and recognition, and can quickly attract the user's attention.

[0077] In addition, the second display subunit 13 is also arranged on the shell 4 for showing environmental information to the user, increasing the practicability of the control module 1.

[0078] With reference to the specific embodiments Figure 8 , the shell 4 is provided with a charging interface; the alarm module 1 further comprises a charging battery, and the charging battery is electrically connected with the charging interface 5.

[0079] Specifically, as shown in the specific embodiments Figure 8 , a battery compartment 6 can be arranged for placing the charging battery. The charging interface 5 can be a Type-C charging port for charging the charging battery through a Type-C data line.

[0080] The above specific embodiments do not constitute a limitation on the protection scope of the utility model. Those skilled in the art should understand that various modifications, combinations, sub-combinations and substitutions can be made according to design requirements and other factors. Any modification, equivalent substitution and improvement within the spirit and principles of the utility model should be included in the protection scope of the utility model.

Claims

1. An emergency alarm system, characterized in that The application relates to an alarm system, which comprises an alarm module, an environment information collection module and a management module; the alarm module comprises an alarm unit and a control unit; the alarm unit comprises an alarm information output end; the control unit comprises an alarm information receiving end, a device information output end, a protocol address receiving end, a collection instruction output end, a first environment information receiving end and an environment information transmission end; the environment information collection module comprises a collection instruction receiving end and an environment information output end; the management module comprises a device information receiving end, a protocol address output end and a second environment information receiving end; the alarm information receiving end is connected with the alarm information output end; the device information output end is connected with the device information receiving end; the protocol address receiving end is connected with the protocol address output end; the control unit is used for determining the device information of the alarm unit according to the received alarm information, transmitting the device information to the management module and receiving the protocol address information of the environment information collection module corresponding to the device information; the collection instruction output end is connected with the collection instruction receiving end; the first environment information receiving end is connected with the environment information output end; the environment information transmission end is connected with the second environment information receiving end; the control unit is further used for controlling the environment information collection module matched with the protocol address information to collect environment information according to the protocol address information and transmitting the environment information to the management module. The environment information collection module comprises an image collection unit, and the environment information comprises environment image information; the management module further comprises a first display unit, which is used for displaying the environment image information received by the second environment information receiving end. The environment information collection module comprises a gas concentration collection unit, and the environment information comprises environment gas concentration information; the management module further comprises a first display unit, which is used for displaying the environment gas concentration information received by the second environment information receiving end. The gas concentration collection unit comprises at least one of a carbon dioxide concentration collection unit, a carbon monoxide concentration collection unit and a formaldehyde concentration collection unit. The environment information collection module comprises a temperature and humidity collection unit, and the environment information comprises environment temperature and humidity information; the management module further comprises a first display unit, which is used for displaying the environment temperature and humidity information received by the second environment information receiving end.

2. The emergency warning system of claim 1, wherein The environment information collection module comprises a position collection unit, and the environment information comprises position information; the management module further comprises a first display unit, which is used for displaying the position information received by the second environment information receiving end. The alarm unit comprises an alarm button and an audible and light alarm subunit; the alarm button comprises the alarm information output end; the control unit further comprises an alarm instruction output end; the audible and light alarm subunit comprises an alarm instruction receiving end; the alarm instruction output end is connected with the alarm instruction receiving end; and the control unit is further used for controlling the audible and light alarm subunit to perform audible and light alarm after receiving the alarm information.

3. The emergency warning system of claim 1, wherein, ​ ​ 4. The emergency warning system of claim 3, wherein, ​ 5. The emergency warning system of claim 1, wherein ​ ​ 6. The emergency warning system of claim 1, wherein, ​ ​ 7. The emergency warning system of claim 1, wherein ​ ​ ​ 8. The emergency warning system of claim 1, wherein, The alarm module further comprises a second display unit; The second display unit comprises a third environmental information receiving end connected with the environmental information transmitting end for displaying the environmental information.

9. The emergency warning system of claim 1, wherein, The alarm module further comprises a shell; The alarm unit comprises an alarm button arranged on the shell.

10. The emergency warning system of claim 9, wherein, A charging interface is arranged on the shell; The alarm module further comprises a charging battery electrically connected with the charging interface.