Temperature identification intelligent guarding method

By installing mobile security software on smartphones and utilizing temperature sensors and data fusion technology, the problem of low penetration rate of fire alarm systems in residential homes has been solved. This enables timely detection of high-temperature fires and automatic emergency calls, and provides an intelligent rescue process and reward mechanism.

CN121921920APending Publication Date: 2026-04-24胡光
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
胡光
Filing Date
2026-03-09
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

The low adoption rate of smoke sensors in existing fire alarm systems in residential homes makes it difficult to detect high-temperature fires and send out distress signals in a timely manner.

Method used

By installing mobile guardian software on a phone, the system uses a temperature sensor to detect ambient temperature, automatically sends out help requests, and combines data from a light sensor, camera, and microphone to improve recognition accuracy. It also integrates with smart door locks, providing rescuers with temporary passwords and a points-based reward system.

Benefits of technology

It enables timely detection of high-temperature fires and automatic dispatch of distress signals even in the absence of smoke sensors in residential homes, improving the timeliness and accuracy of fire rescue and providing an intelligent rescue process and reward mechanism.

✦ Generated by Eureka AI based on patent content.
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Abstract

According to the temperature identification intelligent guarding method, mobile terminal guarding software installed on a mobile phone is included, and the software is provided with a map and can be used after being held by a user and registered and logged in; the background management system is held by a manager and is used for managing the mobile terminal guard software; after detecting that the environment exceeds a certain temperature through a temperature sensor of a mobile phone, the mobile terminal guarding software can intelligently sense and automatically send help information to nearby property security guards, social workers, neighbors and the like; and after the mobile terminal guard software of other nearby users receives the help seeking information, information such as the position of the help seeker is checked on a map, and assistance is implemented. The protection range of the invention comprises but is not limited to the above implementation mode, the protection range of the invention is based on the claims, and any replacement, deformation and improvement which are easy to think by technicians in the field made for the technology fall into the protection range of the invention.
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Description

Technical Field

[0001] This invention relates to an internet-based intelligent temperature recognition protection method. Background Technology

[0002] Existing fire alarm systems rely on smoke sensors, but many residents do not have this device installed in their homes. Residents need an app installed on their mobile phones. The phone's temperature sensor can detect when the ambient temperature exceeds a certain level and automatically send a request for help to nearby property security guards, social workers, neighbors, etc. After receiving the request for help, they can quickly provide assistance. Summary of the Invention

[0003] A temperature-recognition intelligent protection method is characterized by the following steps: A mobile guardian software installed on a phone. The software includes a map, which users can access after registering and logging in. The backend management system, held by the administrator, is used to manage the mobile guardian software. The mobile security software uses the phone's temperature sensor to detect when the ambient temperature exceeds a certain level and automatically sends a distress message. Mobile security software for users such as property security guards, social workers, and neighbors can receive requests for help within a certain range and view the location of the person seeking help on a map. A temperature-based intelligent protection method includes the following steps: a. After User A installs and registers the mobile security software on their phone, the phone's temperature sensor detects that the ambient temperature exceeds a certain range and automatically sends a distress message. b. User B installs the mobile security software on their phone and completes registration and login. They can be various roles such as property security guard, social worker, or resident. c. User B receives a help request from nearby user A. User B can see the location of user A's request on the map of the mobile protection software and can quickly go there to provide assistance. The aforementioned temperature recognition smart protection method integrates the light sensor, camera, and microphone on the mobile phone. Through data combination and learning, it achieves more accurate recognition and reduces misjudgments. The aforementioned temperature recognition smart protection method includes a rescuer application page on the mobile protection software. Only after a user applies to be a rescuer and is approved by the backend management system can they receive help requests from other users. The aforementioned temperature-based intelligent protection method includes a mobile app with online / offline buttons for rescuers. Rescuers can choose to go offline if they are unable to provide assistance, and will no longer receive requests for help. If they choose to go online, they will be able to receive requests for help. The aforementioned temperature recognition smart protection method includes a mobile protection software with floor recognition technology and smart door lock linkage function. When the person seeking help is unable to move around at home, the rescuer can obtain a temporary password to open the door of the person seeking help's home. The aforementioned temperature recognition smart protection method involves the mobile protection software identifying a temperature exceeding a certain value using a temperature sensor. It first prompts the user to request help, then issues or closes the help request based on the user's secondary command. If the user does not respond for an extended period, the help request will be automatically sent to reduce false alarms. The aforementioned temperature-recognition-based smart rescue method includes a "Honors Showcase" in the mobile app. Rescuers who successfully help others are automatically awarded "compassion points" by the system, and are ranked according to their points within a specific administrative region. The Honor Showcase also includes a reward pool, where top-ranked rescuers receive cash rewards. The aforementioned temperature recognition smart protection method has a map on the backend management system. When a mobile phone with the mobile protection software installed and registered sends a distress message, its location is displayed on the map.

Claims

1. A temperature-based intelligent protection method, characterized by: This temperature-recognition intelligent protection system includes: A mobile guardian software installed on a phone. The software includes a map, which users can access after registering and logging in. The backend management system, held by the administrator, is used to manage the mobile guardian software. The mobile security software uses the phone's temperature sensor to detect when the ambient temperature exceeds a certain level and automatically sends a distress message. Mobile security software for users such as property security guards, social workers, and neighbors can receive requests for help within a certain range and view the location of the person seeking help on a map. A temperature-based intelligent protection method includes the following steps: a. After User A installs and registers the mobile security software on their phone, the phone's temperature sensor detects that the ambient temperature exceeds a certain range and automatically sends a distress message. b. User B installs the mobile security software on their phone and completes registration and login. They can be various roles such as property security guard, social worker, or resident. c. User B receives a help request from nearby user A. User B can see the location of user A's request on the map of the mobile protection software and can quickly go there to provide assistance.

2. The temperature recognition smart protection method as described in claim 1 is characterized in that: By integrating the light sensor, camera, and microphone on the phone, and through data combination and learning, more accurate recognition can be achieved and false judgments can be reduced.

3. The temperature recognition smart protection method as described in claim 1 is characterized in that: The mobile app has a rescuer application page. Only after a user applies to become a rescuer and is approved by the backend management system can they receive help requests from other users.

4. The temperature recognition smart protection method as described in claim 1 is characterized in that: The mobile app features online / offline buttons for rescuers. If a rescuer is unable to conduct a rescue, they can choose to go offline and will no longer receive requests for help. If they choose to go online, they will be able to receive requests for help.

5. The temperature recognition smart protection method as described in claim 1 is characterized in that: The mobile security software features floor recognition technology and can be linked with smart locks. When the person seeking help is unable to move around at home, the rescuer can obtain a temporary password to open the door.

6. The temperature recognition smart protection method as described in claim 1 is characterized in that: The mobile guardian software detects that the temperature exceeds a certain value through a temperature sensor, and first prompts whether to send a help request. It then sends or closes the help request based on the user's secondary command. If the user does not respond for a long time, the help request will be sent automatically to reduce false alarms.

7. The temperature recognition smart protection method as described in claim 1 is characterized in that: The mobile app features a showcase of achievements. Rescuers automatically receive points for successfully helping others, and are ranked according to their points within a specific administrative region. The showcase also includes a reward pool; top-ranked rescuers can receive cash prizes.

8. The temperature recognition smart protection method as described in claim 1 is characterized in that: the background... The management system has a map. When a mobile phone with the mobile protection software installed and registered sends a distress message, its location is displayed on the map.