Dangerous case warning information submission system
By designing a hazard warning information reporting system and utilizing the linkage between distress alarms and the rescue system server, the problem of low-intensity hazards not being handled in a timely manner was solved, achieving efficient hazard information reporting and resource optimization.
Patent Information
- Application Number
- CN202520357000.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2035-03-03
AI Technical Summary
In the current technology, low-intensity emergencies cannot be effectively linked to organizations or individuals outside of social functions, leading to waste of resources and untimely handling.
A hazard warning information reporting system was designed, including a distress alarm and a rescue system server, which are connected via the Internet. The distress alarm includes a control unit, a power supply unit, a network communication module, a storage module, a positioning module, a camera module, a sound pickup module, a manual input module, and an audio-visual output module, which are used for real-time information collection and reporting, and realize linkage with non-social functional departments.
It enabled timely, comprehensive, and adequate response to low-intensity emergencies, reduced resource waste, and improved handling efficiency.
Smart Images

Figure CN223897939U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a technology for reporting hazard warning information, and more particularly to a technology for reporting low-intensity hazard warning information. Background Technology
[0002] In home environments, service industry office environments, and business premises, such as residences, office buildings, museums, and hotels, there may be some low-intensity hazards, such as people tripping, occasional emergencies, and electrical damage. These hazards have a limited impact and can be resolved by ordinary people without the need for professional emergency organizations. These hazards are classified as low-intensity hazards, which are distinct from high-intensity major hazards such as traffic accidents, fires, thefts, and earthquakes.
[0003] Current technologies for handling low-intensity emergencies often rely on individuals' psychological constraints in interpersonal relationships—such as reluctance to contact those around them due to considerations of personal relationships—and a lack of contact information for the management or responsible parties at the location. They primarily depend on the individual contacting relevant social departments via mobile communication tools, with these departments responding promptly based on the alarm information. As mentioned earlier, low-intensity emergencies are not events that seriously endanger personal safety or health. Requesting action from the police, hospitals, or fire departments to resolve such incidents would inevitably consume and waste public resources. Low-intensity emergencies can be handled by property management, community organizations, dedicated personnel, and friends or colleagues. Current technologies lack technical solutions that link low-intensity emergencies to these non-social functional departments, thus neglecting the technical needs for addressing low-intensity emergencies. Summary of the Invention
[0004] The technical problem this invention aims to solve is how to associate low-intensity emergencies with organizations or individuals outside of social functional departments, thereby obtaining a corresponding low-intensity emergency warning information reporting system.
[0005] To solve the above-mentioned technical problems, this utility model adopts the following technical solution. The hazard warning information reporting system in the technical solution includes a distress alarm and a rescue system server. The distress alarm and the rescue system server are communicatively connected. The distress alarm includes a housing, a control unit, a power supply unit, a network communication module, a storage module, a positioning module, a camera module, a microphone module, a manual input module, and an audio-visual output module. The control unit, power supply unit, network communication module, storage module, positioning module, camera module, microphone module, manual input module, and audio-visual output module are all installed inside the housing. The power supply unit, network communication module, storage module, positioning module, camera module, microphone module, manual input module, and audio-visual output module are all communicatively connected to and controlled by the control unit. The network communication module, storage module, positioning module, camera module, audio pickup module, manual input module, and audio-visual output module are all connected to the power supply unit and powered by the power supply unit. The network communication module is used to establish a network communication connection with the rescue system server. The storage module is used to store information corresponding to the address, emergency handling contact terminal information, warning content, voice trigger content, audio information, and video information. The positioning module is used to determine the real-time location. The camera module is used to capture live video. The audio pickup module is used to record real-time sound and respond to trigger content. The manual input module is used to manually start or stop the distress alarm. The audio-visual output module is used to emit warning content in an audio-visual manner and play audio for voice communication.
[0006] The distress alert device is an independent working unit, placed in various locations with complete functionality. These locations are considered the site of the emergency or the area involved, allowing the person in charge to easily access and activate the device. The distress alert device communicates with the rescue system server via an internet-based connection. Once triggered, the rescue system server can transmit the emergency location address to a designated non-social functional department organization or individual, completing the emergency alert information reporting. During this process, the person in charge does not need to deal with communication difficulties or the awkward situation of having no way to seek help due to a lack of contact information for the management unit or responsible person at the location involved. This provides a timely, comprehensive, and effective response to the person's request for help in low-intensity emergencies.
[0007] In this technical solution, the manual input module is equipped with a distress button and a cancel button, the camera module is equipped with a camera, the audio pickup module is equipped with a microphone, and the audio-visual output module is equipped with a warning light and a speaker. The distress button, cancel button, camera, and microphone are all located on the same side of the housing, while the warning light and speaker are distributed along the edge of the housing. The housing has a sliding cover for obscuring the camera. This arrangement of input and output components facilitates accurate feedback of information from the emergency scene and enables warnings and communication with the affected party and those around them.
[0008] The distress alarm is designed with portability in mind, allowing for placement in specific locations as needed, thus exhibiting significant mobility. Since site applications may involve both long-term and short-term use, the distress alarm features an independent switch design—the power supply unit has a switch button located directly below the housing. To use the distress alarm, turn on the switch button; to use it, turn it off.
[0009] This technical solution also provides a method for reporting hazard warning information applicable to the aforementioned hazard warning information reporting system.
[0010] The first step is to initialize the configuration of the distress alarm device by configuring the information corresponding to the address, including the emergency handling contact terminal information of the receiving address for receiving emergency alarm information, the alarm content, and the voice trigger content.
[0011] The second step involves the following steps: when the person seeking help manually activates and / or voice-triggers the distress alarm, the information corresponding to the address, the emergency handling contact terminal information, and the real-time location obtained through the positioning module are uploaded to the rescue system server, and the distress alarm issues a warning message.
[0012] The third step involves the rescue system server reporting emergency warning information, including the address information, the real-time location obtained through the positioning module, and written format, to the receiving address in the emergency handling contact terminal information.
[0013] After the above steps are completed, a fourth step can be performed: the rescue system server captures live video through the camera module and records real-time sound through the audio pickup module. When the rescue system server determines that the live video and / or real-time sound indicate a genuine emergency, it will hand the case over to human service to handle the situation of the person seeking help. When the rescue system server determines that the live video and / or real-time sound indicate a non-emergency situation, it will send an emergency clearance message to the emergency handling communication terminal.
[0014] In the third step, the rescue system server simultaneously sends hazard warning information to at least two receiving addresses in the hazard handling contact terminal information.
[0015] The rescue system server can actively access the audio and video information within the distress alert device.
[0016] During the execution of the third step, after the emergency warning information is reported, when the distress alarm is manually deactivated, the rescue system server sends an emergency clearance message to the emergency handling communication terminal.
[0017] This utility model adopts the above-mentioned technical solution: the hazard warning information reporting system can fully rely on the reasonable way of handling the hazard at the scene of the hazard, link low-intensity hazards with organizations or individuals that are not social functional departments, and report hazard warning information to specific organizations or individuals in the most efficient way, thus meeting the technical needs for solving low-intensity hazards. Attached Figure Description
[0018] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0019] Figure 1 The circuit functional diagram of the hazard warning information reporting system of this utility model is shown below.
[0020] Figure 2 This is a perspective view of the hazard warning information reporting system and method of the present invention. Detailed Implementation
[0021] The hazard warning information reporting system consists of two parts: one part is the distress warning device deployed on-site, and the other part is the rescue system server deployed far away from the site. The two parts are connected via the Internet.
[0022] like Figure 1 , 2 As shown, the distress alarm includes a housing 1. Inside the housing 1 are a control unit 2, a power supply unit 3, a network communication module 4, a storage module 5, a positioning module 6, a camera module 7, a sound pickup module 8, a manual input module 9, and an audio-visual output module 10. The power supply unit 3, network communication module 4, storage module 5, positioning module 6, camera module 7, sound pickup module 8, manual input module 9, and audio-visual output module 10 are all communicatively connected to and controlled by the control unit 2. The control unit 2, network communication module 4, storage module 5, positioning module 6, camera module 7, sound pickup module 8, manual input module 9, and audio-visual output module 10 are all connected to the power supply unit 3 and are powered by the power supply unit 3. The power supply unit 3 has a switch button 17. When the switch button 17 is turned on, the entire distress alarm is powered on and operates; when the switch button 17 is turned off, the entire distress alarm is powered off and shut down.
[0023] The network communication module 4 is used to establish a network communication connection between the entire distress alarm and the rescue system server. The storage module 5 stores information corresponding to the address, emergency response terminal information, warning content, voice trigger content, audio information, and video information. The positioning module 6 is used to determine the real-time location. The camera module 7 is used to capture live video; it includes a camera 13. The audio pickup module 8 is used to record real-time sound and respond to trigger content; it includes a microphone 14. The manual input module 9 is used to manually start or stop the distress alarm; it includes a distress button 11 and a cancel button 12. Pressing the distress button 11 issues a distress warning, and pressing the cancel button 12 cancels the distress warning. The audio-visual output module 10 is used to emit warning content in an audio-visual manner and play audio for voice communication; it includes a warning light 15 and a speaker 16. The SOS button 11, Cancel button 12, camera 13, and microphone 14 are all located on the same side of the housing 1 and on the front. The warning light 15 and speaker 16 are distributed on the edge of the housing 1. The housing 1 is provided with a sliding cover 18 for covering the camera 13. The range of motion of the sliding cover 18 on the housing 1 can ensure that the sliding cover 18 covers the camera 13 or moves away from the camera 13. The power button 17 is located directly below the housing 1.
[0024] When setting up on site, apply double-sided tape to the back of the housing 1, and then stick the entire distress alarm to the wall or other vertical surface. Slide the cover 18 to a position that does not obstruct the camera 13.
[0025] Turn on switch 17 to power on the emergency alarm. Before use, initialize the emergency alarm by configuring the address-corresponding information, including the receiving address for receiving emergency alerts, the emergency handling contact terminal information, the alert content, and the voice trigger content. Address-corresponding information refers to markers that map to the address, such as bedroom, kitchen, office, men's restroom, lounge, smoking room, storage room, etc. Emergency handling contact terminal information includes the receiving address for receiving emergency alerts, which can be a WeChat account, QQ account, Weibo account, DingTalk account, mobile phone number, email address, etc. The alert content can be user-customizable voice content and flashing light frequency to broadcast an emergency, such as "Danger here," "Abnormal situation," "Rescue needed here," etc., along with different flashing frequency values. The voice trigger content is the sound content that the voice wake-up function can respond to, such as "Help!", "Help me!", "Need help!", "Help me!", "Is anyone there?", etc., and this sound content can also be customized by the user.
[0026] If the person involved manually presses the distress button 11, the distress alarm will be manually activated; or if the person shouts the same sound as the voice trigger, the distress alarm will be activated via voice. The distress alarm will upload the address information, the emergency response contact terminal information, and the real-time location obtained through the positioning module 6 to the rescue system server. Simultaneously, the distress alarm will issue a warning message, the warning light 15 will emit a warning flash, and the speaker 16 will emit a warning sound, alerting those in the vicinity of the incident. The frequency of the flash and the sound content are derived from the aforementioned warning message. The rescue system server will report an emergency warning message according to the receiving address in the emergency response contact terminal information, including the address information, the real-time location obtained through the positioning module 6, and a written format. This written format is configured in the rescue system server and can be something like, "The emergency warning information reporting system reminds you of an emergency." In this case, the emergency warning message could be something like, "Fifth floor smoking room, XX Province, XX City, XX District, XX Road, XX Building, the emergency warning information reporting system reminds you of an emergency."
[0027] The number of receiving addresses can be increased or decreased as needed. When there is only one receiving address, only the hazard warning message is sent to that receiving address. When there are two or more receiving addresses, the corresponding number of hazard warning messages are sent simultaneously.
[0028] After the hazard warning information is sent, the rescue system server captures live video through camera module 7 and records real-time audio through audio pickup module 8. If the rescue system server determines that the situation is a genuine hazard based on the live video, real-time audio, or a combination of both, it will hand the case over to human assistance to handle the caller's situation. If the rescue system server determines that the situation is not a hazard based on the live video, real-time audio, or a combination of both, it will send a hazard clearing message to the hazard handling communication terminal. The hazard clearing message includes information corresponding to the address, the real-time location obtained through positioning module 6, and a written format. This written format is also configured in the rescue system server and can be something like, "The hazard warning information reporting system reminds you that the hazard has been cleared." In this case, the hazard clearing message could be something like, "Fifth floor smoking room, XX Province, XX City, XX District, XX Road, XX Building, the hazard warning information reporting system reminds you that the hazard has been cleared."
[0029] Once the emergency warning information is reported, the distress alarm can be manually deactivated at any time by pressing the cancel button 12. The distress alarm will then send the deactivation command to the rescue system server, which will then send the emergency deactivation information to the emergency handling communication terminal.
[0030] During this period, the rescue system server can proactively access the audio and video information stored in the distress alarm that belongs to the historical record at any time.
Claims
1. A hazard warning information reporting system, comprising a distress signal device and a rescue system server, wherein the distress signal device and the rescue system server are communicatively connected, characterized in that: The distress alarm includes a housing (1), a control unit (2), a power supply unit (3), a network communication module (4), a storage module (5), a positioning module (6), a camera module (7), a sound pickup module (8), a manual input module (9), and an audio-visual output module (10). The control unit (2), power supply unit (3), network communication module (4), storage module (5), positioning module (6), camera module (7), sound pickup module (8), manual input module (9), and audio-visual output module (10) are all installed inside the housing (1). The power supply unit (3), network communication module (4), storage module (5), positioning module (6), camera module (7), sound pickup module (8), manual input module (9), and audio-visual output module (10) are all communicatively connected to and controlled by the control unit (2). The communication module (4), storage module (5), positioning module (6), camera module (7), sound pickup module (8), manual input module (9), and sound and light output module (10) are all connected to the power supply unit (3) and are powered by the power supply unit (3). The network communication module (4) is used to establish a network communication connection with the rescue system server. The storage module (5) is used to store information corresponding to the address, emergency handling contact terminal information, warning content, voice trigger content, audio information, and video information. The positioning module (6) is used to determine the real-time location. The camera module (7) is used to shoot real-time video. The sound pickup module (8) is used to record real-time sound and respond to trigger content. The manual input module (9) is used to manually start or manually stop the distress alarm. The sound and light output module (10) is used to emit warning content in a sound and light manner and play sound for voice communication.
2. The hazard warning information reporting system according to claim 1, characterized in that: The manual input module (9) is equipped with a distress button (11) and a cancel button (12). The camera module (7) is equipped with a camera (13). The sound pickup module (8) is equipped with a microphone (14). The sound and light output module (10) is equipped with a warning light (15) and a speaker (16). The distress button (11), cancel button (12), camera (13), and microphone (14) are all located on the same side of the housing (1). The warning light (15) and speaker (16) are distributed on the edge of the housing (1). The housing (1) is equipped with a sliding cover (18) for blocking the camera (13).
3. The hazard warning information reporting system according to claim 1, characterized in that: The power supply unit (3) is equipped with a switch button (17), which is located directly below the housing (1).