A geological disaster prediction value-keeping robot based on WeChat

The geological disaster forecasting and monitoring robot system based on WeChat has enabled accurate monitoring and timely transmission of geological disaster information, solving the problems of high labor costs, untimely information transmission, and high false transmission rate in existing technologies, and improving the accuracy and timeliness of early warnings.

CN116614462BActive Publication Date: 2026-03-03广西壮族自治区地质环境监测站
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Patent Information

Application Number
CN202310385920.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-12
Publication Date
2026-03-03
Estimated Expiration
2043-04-12

AI Technical Summary

Technical Problem

Existing geological disaster monitoring and early warning systems suffer from high labor costs, untimely information delivery, low accuracy, and high false alarm rates. In particular, when sending information via SMS, it is easily blocked by mobile phones and is expensive, resulting in insufficient timeliness and accuracy of early warnings.

Method used

A WeChat-based geological disaster forecasting and monitoring robot is used. It divides administrative regions through a regional map module, monitors using a disaster identification module, acquires information by combining multiple monitoring devices, and transmits the information to the WeChat robot group management module for editing and sending through an information transmission module. The WeChat robot server is used to send early warning information automatically or manually.

Benefits of technology

It has improved the accuracy and timeliness of geological disaster information transmission, ensuring that people can obtain geological disaster information in a timely manner, reducing human error, lowering costs, and improving the accuracy and timeliness of early warnings.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a WeChat-based geological disaster forecasting and monitoring robot in the field of disaster forecasting. It includes a regional map module, a disaster identification module, an information transmission module, and a WeChat robot group management module. The WeChat robot group management module receives geological disaster information, geological disaster prediction information, and the location information of the geological disaster monitoring points monitored by the disaster identification module. The regional map module divides the area into regions, the disaster identification module monitors geological disasters, and the information is transmitted to the WeChat robot group management module via the information transmission module. The WeChat robot server in the WeChat robot group management module then sends the geological disaster prediction information for that region to the WeChat groups in that region. This improves the speed and accuracy of geological disaster information transmission, enabling people to obtain local geological disaster information in a timely and effective manner, take timely precautions, and to a certain extent ensure the safety of people's lives and property.
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Description

Technical Field

[0001] This invention belongs to the field of disaster forecasting, specifically a geological disaster forecasting and monitoring robot based on WeChat. Background Technology

[0002] Geological disasters, primarily caused by natural or man-made geological activities, cause catastrophic damage to the geological environment. These include earthquakes, landslides, mudslides, debris flows, and ground subsidence. In recent years, geological disasters have become increasingly frequent, causing significant losses in human and financial resources. Monitoring geological disasters is crucial for timely detection and prevention. Currently, most geological disaster monitoring relies on manual methods. Data is collected manually using measuring equipment, and the results are recorded and sent to higher authorities for statistical analysis. However, this method is extremely labor-intensive and time-consuming, leading to delays in timely dissemination of monitoring results and hindering rapid monitoring. Existing early warning systems are ineffective in accurately and efficiently sending geological disaster warnings, failing to effectively notify people in potentially affected areas. Furthermore, manually sending warning text messages, one by one, is time-consuming and prone to human error, further delaying the timeliness of geological disaster warnings.

[0003] To address the aforementioned issues, Chinese Patent Publication No. CN 104200619 A discloses an automatic SMS sending system for meteorological and geological disaster forecasts. This system employs a combined meteorological information acquisition server and an information processing server to effectively analyze meteorological information and generate warning SMS messages, which are then sent to mobile phone users via a mobile proxy server. This effectively solves the problem of missed or incorrect delivery of geological disaster meteorological warning information. Furthermore, by integrating geographic information into the warning information, the system enhances the targeting of geological disaster meteorological warning SMS messages, making the delivery more effective and timely, thus improving the timeliness of geological disaster meteorological warning SMS messages.

[0004] However, because some mobile phones have the function of automatically blocking spam SMS messages, this message is easily identified as spam by the phone, causing users to not receive geological disaster information in a timely manner. Furthermore, sending SMS messages requires payment; if such messages are sent widely, it will generate substantial costs. Widespread SMS sending can also reduce the accuracy of geological disaster information delivery; if people frequently receive geological disaster information from other regions, their responsiveness may decrease. Therefore, this solution proposes a WeChat-based geological disaster forecasting and monitoring robot. Summary of the Invention

[0005] To address the issue of low accuracy in transmitting geological disaster information, this invention provides a WeChat-based geological disaster forecasting and monitoring robot. This robot aims to improve the accuracy of geological disaster information transmission, enabling people to obtain local geological disaster information in a timely and effective manner, take preventative measures, and, to a certain extent, ensure the safety of people's lives and property.

[0006] To achieve the above objectives, the technical solution of the present invention is as follows: a geological disaster forecasting and monitoring robot based on WeChat, comprising a regional map module, a disaster identification module, an information transmission module, and a WeChat robot group management module.

[0007] The regional map module is used to divide administrative regions, count the specific locations of areas prone to geological disasters and areas frequently affected by geological disasters within each administrative region, and mark and number these specific locations.

[0008] The disaster identification module includes several geological disaster monitoring points. These monitoring points are used to monitor geological disasters at marked locations within the regional map module and to predict geological disasters in the area where the monitoring point is located.

[0009] The information transmission module is used to acquire geological disaster information and geological disaster prediction information monitored at the geological disaster monitoring points, and transmit this information to the WeChat robot group management module via wireless signal.

[0010] The WeChat robot group management module includes an information receiving module and a WeChat robot server. The information receiving module is connected to the WeChat robot server via a signal. The information receiving module is used to receive geological disaster information, geological disaster prediction information, and the location number information of the geological disaster monitoring point monitored by the geological disaster monitoring point, and transmit the information to the WeChat robot server. The WeChat robot server is used to obtain and edit the geological disaster prediction information, obtain the location of the geological disaster monitoring point according to the number information of the geological disaster monitoring point, and then send the edited information to WeChat groups in the administrative region and surrounding administrative regions.

[0011] The principle and beneficial effects of the above scheme are as follows: The above-mentioned WeChat-based geological disaster forecasting and monitoring robot divides the region into areas through the regional map module, monitors geological disasters in each area using the disaster identification module, and transmits geological disaster information and geological disaster prediction information to the WeChat robot group management module through the information transmission module. The WeChat robot server then edits and sends the geological disaster prediction information, thereby improving the accuracy of geological disaster information transmission, enabling people to obtain local geological disaster information in a timely and effective manner, take timely precautions, and to a certain extent ensure the safety of people's lives and property.

[0012] Furthermore, geological hazard monitoring at geological hazard monitoring points includes landslide and collapse monitoring, debris flow monitoring, and ground subsidence monitoring; landslide and collapse monitoring, debris flow monitoring, and ground subsidence monitoring respectively employ landslide and collapse monitoring equipment, debris flow monitoring equipment, and ground subsidence monitoring equipment.

[0013] Beneficial effects: By using landslide and collapse monitoring equipment, debris flow monitoring equipment, and ground subsidence monitoring equipment to monitor landslides and collapses, debris flows, and ground subsidence respectively, the monitoring of geological disasters becomes more comprehensive.

[0014] Furthermore, the collapse and landslide monitoring equipment includes any one or more of the following: rainfall sensors, GNSS high-precision displacement sensors, inclinometer sensors, moisture content sensors, pore water pressure sensors, and front-end cameras; the debris flow monitoring equipment includes any one or more of the following: front-end cameras, mud level sensors, water level sensors, rainfall sensors, moisture content sensors, impact acceleration sensors, and displacement sensors; and the ground subsidence monitoring equipment includes any one or more of the following: front-end cameras, settlement sensors, settlement monitoring instruments, and GNSS high-precision displacement sensors.

[0015] Beneficial effects: The use of multiple monitoring instruments in combination to monitor geological disasters improves the accuracy of geological disaster monitoring.

[0016] Furthermore, the WeChat robot server is connected to a mobile terminal, which is used to display information from the WeChat robot server and control its operation.

[0017] Beneficial effects: Mobile terminals make it easy for people to access the backend data of the WeChat-based geological disaster forecasting and monitoring robot, making it easier for people to operate and control it.

[0018] Furthermore, the sending of geological disaster prediction information to WeChat groups by the WeChat robot server can be done manually or automatically by the WeChat robot server.

[0019] The time remaining before a geological disaster is predicted is denoted as 'a'. When the time remaining before a geological disaster is greater than 'a', the geological disaster prediction information is sent manually. The person edits the geological disaster prediction information in the WeChat robot server and sends it to the corresponding WeChat group after manual review. If the time reaches 'a' and the manual review is not completed, the WeChat robot server automatically edits the geological disaster prediction information and sends it to the corresponding WeChat group.

[0020] Beneficial effects: Manual editing and review of geological disaster information can improve the accuracy of the information to a certain extent. Utilizing WeChat robot servers to automatically edit and send geological disaster prediction information can enable people to obtain geological disaster information in a timely manner, thus improving the efficiency of geological disaster information transmission.

[0021] Furthermore, the WeChat robot server is connected to a storage module, which stores information within the WeChat robot server.

[0022] Beneficial effect: The storage module facilitates the storage of backend data for the WeChat-based geological disaster forecasting and monitoring robot.

[0023] Furthermore, the mobile terminal displays information from the WeChat robot server and controls its operation. It can search by administrative region and group name, and perform searches after entering the corresponding condition parameters. It can add WeChat robot groups, modify group information, delete and export relevant information. It can also export records; the WeChat robot server will export all WeChat robot group records and display them on the mobile terminal in the form of an Excel spreadsheet.

[0024] Furthermore, when manually sending geological disaster prediction information, the person manually selects a WeChat group, chooses a WeChat template, and fills in the required parameters before publishing the information, thus putting the geological disaster prediction information into a pending approval state.

[0025] Beneficial effects: This makes it easier to manage WeChat groups and improves the accuracy of WeChat group messages. Attached Figure Description

[0026] Figure 1 This is a flowchart of a WeChat-based geological disaster forecasting and monitoring robot according to an embodiment of the present invention. Detailed Implementation

[0027] The following detailed description illustrates the specific implementation method:

[0028] The basic implementation examples are as follows: Figure 1 As shown:

[0029] A WeChat-based geological disaster forecasting and monitoring robot includes a regional map module, a disaster identification module, an information transmission module, and a WeChat robot group management module.

[0030] The regional map module is used to divide administrative regions, count the specific locations of areas prone to geological disasters and areas frequently affected by geological disasters within each administrative region, and mark and number these specific locations.

[0031] The disaster identification module includes several geological disaster monitoring points. These monitoring points are used to monitor geological disasters at marked locations within the regional map module and to predict geological disasters in the area where the monitoring point is located.

[0032] Geological hazard monitoring at geological hazard monitoring sites includes landslide and collapse monitoring, debris flow monitoring, and ground subsidence monitoring; landslide and collapse monitoring, debris flow monitoring, and ground subsidence monitoring respectively use landslide and collapse monitoring equipment, debris flow monitoring equipment, and ground subsidence monitoring equipment.

[0033] Landslide and collapse monitoring equipment includes any one or more of the following: rainfall sensors, GNSS high-precision displacement sensors, inclinometer sensors, moisture content sensors, pore water pressure sensors, and front-end cameras; debris flow monitoring equipment includes any one or more of the following: front-end cameras, mud level sensors, water level sensors, rainfall sensors, moisture content sensors, impact acceleration sensors, and displacement sensors; ground subsidence monitoring equipment includes any one or more of the following: front-end cameras, settlement sensors, settlement monitoring instruments, and GNSS high-precision displacement sensors.

[0034] The information transmission module is used to acquire geological disaster information and geological disaster prediction information monitored at the geological disaster monitoring points, and transmit this information to the WeChat robot group management module via wireless signal.

[0035] The WeChat robot group management module includes an information receiving module and a WeChat robot server. The information receiving module is connected to the WeChat robot server via a signal. The information receiving module is used to receive geological disaster information, geological disaster prediction information, and the location number information of the geological disaster monitoring point monitored by the geological disaster monitoring point, and transmit the information to the WeChat robot server. The WeChat robot server is used to obtain and edit the geological disaster prediction information, obtain the location of the geological disaster monitoring point according to the number information of the geological disaster monitoring point, and then send the edited information to WeChat groups in the administrative region and surrounding administrative regions.

[0036] The WeChat robot server is connected to a mobile terminal, which is used to display information from the WeChat robot server and control its operation. The mobile terminal can search by administrative region and group name; it can add, modify, delete, and export WeChat robot groups; and it can export records—the WeChat robot server will export all WeChat robot group records and display them on the mobile terminal in Excel format.

[0037] The WeChat robot server sends geological disaster prediction information to WeChat groups either manually or automatically. The time remaining before the geological disaster is recorded as 'a'. When the time remaining before the geological disaster is greater than 'a', the geological disaster prediction information is sent manually. The person edits the geological disaster prediction information within the WeChat robot server, and after manual review, sends the information to the corresponding WeChat group. If the time reaches 'a' and manual review is not completed, the WeChat robot server automatically edits the geological disaster prediction information and sends it to the corresponding WeChat group.

[0038] The WeChat robot server has a signal connection to a storage module, which stores information within the WeChat robot server.

[0039] The specific implementation process is as follows:

[0040] The aforementioned WeChat-based geological disaster forecasting and monitoring robot divides the region into areas using a regional map module, statistically analyzes the specific locations of areas prone to geological disasters and areas frequently affected by geological disasters within each administrative region, and marks and numbers these specific locations.

[0041] Geological hazard monitoring is conducted in various regions using a disaster identification module. Specifically, landslide and debris flow monitoring equipment, and ground subsidence monitoring equipment are used for these purposes, respectively. Landslide and debris flow monitoring equipment includes any one or more of the following: rainfall sensors, GNSS high-precision displacement sensors, inclinometers, moisture content sensors, pore water pressure sensors, and front-end cameras. Debris flow monitoring equipment includes any one or more of the following: front-end cameras, mud level sensors, water level sensors, rainfall sensors, moisture content sensors, impact acceleration sensors, and displacement sensors. Ground subsidence monitoring equipment includes any one or more of the following: front-end cameras, settlement sensors, settlement monitoring instruments, and GNSS high-precision displacement sensors.

[0042] The above method is used to monitor geological disaster information and geological disaster prediction information, and the information is transmitted to the information transmission module, and then transmitted to the WeChat robot group management module via wireless signal.

[0043] The information receiving module receives geological disaster information, geological disaster prediction information, and the location number of the geological disaster monitoring point as monitored by the geological disaster monitoring point, and transmits the information to the WeChat robot server.

[0044] The WeChat robot server acquires, edits, and sends geological disaster prediction information. This information includes the time, warning type, warning level, hazard point information, warning equipment, and warning content. The WeChat robot server sends the geological disaster prediction information to WeChat groups either manually or automatically. The time remaining before the geological disaster is recorded as 'a'. When the time remaining before the expected occurrence is greater than 'a', the geological disaster prediction information is sent manually. The user edits the geological disaster prediction information within the WeChat robot server, and after manual review, sends it to the corresponding WeChat group. When sending the geological disaster prediction information manually, the user selects the WeChat group, chooses the WeChat template, fills in the required parameters, and then publishes the information, putting it into a pending approval state.

[0045] If time 'a' is reached and manual review is not completed, the WeChat robot server will automatically edit the geological disaster prediction information, obtain the location of the geological disaster monitoring point based on its number, and then send the edited information to WeChat groups in the administrative region and surrounding administrative regions.

[0046] The system utilizes a storage module to store information within the WeChat robot server. Mobile terminals can display this information and control the server's operation. Searches can be performed based on administrative region and group name criteria; users can input the appropriate parameters to initiate a search. The system also allows for the creation, modification, deletion, and export of WeChat robot groups. Furthermore, it can export records; the WeChat robot server will export all WeChat robot group records and display them as an Excel spreadsheet on the mobile terminal. This improves the accuracy of geological disaster information dissemination, enabling people to obtain timely and effective information about local geological disasters and take preventative measures, thus ensuring the safety of people's lives and property to a certain extent.

[0047] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0048] The above descriptions are merely embodiments of the present invention. Commonly known structures and characteristics are not described in detail here. Those skilled in the art are aware of all common technical knowledge in the field prior to the application date or priority date, are aware of all existing technologies in that field, and have the ability to apply conventional experimental methods prior to that date. Those skilled in the art can, under the guidance of this application, improve and implement this solution in combination with their own capabilities. Some typical known structures or methods should not be obstacles for those skilled in the art to implement this application. It should be noted that those skilled in the art can make several modifications and improvements without departing from the structure of the present invention. These should also be considered within the scope of protection of the present invention, and will not affect the effectiveness of the implementation of the present invention or the practicality of the patent. The scope of protection claimed in this application should be determined by the content of its claims, and the specific embodiments described in the specification can be used to interpret the content of the claims.

Claims

1. A WeChat-based geological disaster forecasting and monitoring robot, characterized in that: It includes a regional map module, a disaster identification module, an information transmission module, and a WeChat robot group management module; The regional map module is used to divide administrative regions, count the specific locations of areas prone to geological disasters and areas frequently affected by geological disasters within each administrative region, and mark and number these specific locations. The disaster identification module includes several geological disaster monitoring points. These monitoring points are used to monitor geological disasters at marked locations within the regional map module and to predict geological disasters in the areas where the monitoring points are located. The information transmission module is used to acquire geological disaster information and geological disaster prediction information monitored at the geological disaster monitoring points, and transmit this information to the WeChat robot group management module via wireless signal; The WeChat robot group management module includes an information receiving module and a WeChat robot server. The information receiving module is connected to the WeChat robot server via a signal. The information receiving module is used to receive geological disaster information, geological disaster prediction information, and the location number of the geological disaster monitoring point monitored by the geological disaster monitoring point, and then transmits the information to the WeChat robot server. The WeChat robot server is used to obtain and edit the geological disaster prediction information, obtain the location of the geological disaster monitoring point based on the number of the geological disaster monitoring point, and then send the edited information to WeChat groups in the administrative region and surrounding administrative regions. The WeChat robot server sends geological disaster prediction information to WeChat groups either manually or automatically. The time remaining before a geological disaster is predicted is denoted as 'a'. When the time remaining before a geological disaster is greater than 'a', the geological disaster prediction information is sent manually. The person edits the geological disaster prediction information in the WeChat robot server and sends it to the corresponding WeChat group after manual review. If the time reaches 'a' and the manual review is not completed, the WeChat robot server automatically edits the geological disaster prediction information and sends it to the corresponding WeChat group. The mobile terminal displays information from the WeChat robot server and controls its operation. It can search by administrative region and group name, and perform searches after entering the corresponding condition parameters. It can add WeChat robot groups, modify group information, delete and export relevant information. It can also export records; the WeChat robot server will export all WeChat robot group records and display them on the mobile terminal in the form of an Excel spreadsheet.

2. The WeChat-based geological disaster forecasting and monitoring robot according to claim 1, characterized in that: Geological hazard monitoring at geological hazard monitoring sites includes earthquake monitoring, landslide monitoring, debris flow monitoring, ground subsidence monitoring, and volcanic eruption monitoring. Earthquake monitoring, landslide monitoring, debris flow monitoring, ground subsidence monitoring, and volcanic eruption monitoring respectively use earthquake monitoring equipment, landslide monitoring equipment, debris flow monitoring equipment, ground subsidence monitoring equipment, and volcanic eruption monitoring equipment.

3. The WeChat-based geological disaster forecasting and monitoring robot according to claim 2, characterized in that: Earthquake monitoring equipment includes any one or more of the following: front-end camera, water temperature and level sensor, vibration sensor, seismic wave sensor, tilt sensor, and displacement sensor; landslide monitoring equipment includes any one or more of the following: front-end camera, photoelectric sensor, vibrating wire crack gauge, pressure sensor, impact acceleration sensor, and vibration sensor; debris flow monitoring equipment includes any one or more of the following: front-end camera, water quality analyzer, water temperature and level sensor, rainfall sensor, humidity sensor, impact acceleration sensor, displacement sensor, and geological sensor; ground subsidence monitoring equipment includes any one or more of the following: front-end camera, subsidence sensor, subsidence monitor, geological sensor, and displacement sensor; volcanic eruption monitoring equipment includes any one or more of the following: front-end camera, pressure sensor, density sensor, vibration sensor, temperature sensor, and humidity sensor.

4. The WeChat-based geological disaster forecasting and monitoring robot according to claim 3, characterized in that: The WeChat robot server is connected to a mobile terminal, which is used to display information from the WeChat robot server and control its operation.

5. The WeChat-based geological disaster forecasting and monitoring robot according to claim 4, characterized in that: The WeChat robot server has a signal connection to a storage module, which is used to store information within the WeChat robot server.

6. The WeChat-based geological disaster forecasting and monitoring robot according to claim 5, characterized in that: When manually sending geological disaster prediction information, the user manually selects a WeChat group, chooses a WeChat template, and fills in the required parameters before publishing the information, thus putting the geological disaster prediction information into a pending approval state.

Citation Information

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