A hiker anti-lost early warning and tracking system and method

By constructing a mountaineer anti-lost early warning and tracking system with modules for map display, information reporting, data management, and system interaction, the system solves the problems of inconvenience of traditional maps and weak signal of digital solutions. It enables mountaineers to quickly seek help when they get lost and enables staff to provide efficient assistance, thereby improving the safety and management efficiency of mountaineering activities.

CN122392223APending Publication Date: 2026-07-14王婷
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
王婷
Filing Date
2026-04-21
Publication Date
2026-07-14

AI Technical Summary

Technical Problem

Existing technologies cannot provide comprehensive guidance to prevent getting lost during mountaineering activities. Traditional paper maps are inconvenient to carry, and digital solutions are inaccurate in terms of positioning when the signal is weak in mountainous areas and the submission of help requests is cumbersome. The lack of systematic management leads to mountaineers being unable to quickly seek help when they get lost and staff responding slowly.

Method used

A mountaineer anti-lost early warning and tracking system is constructed, comprising four major modules: map display, information reporting, data management, and system interaction. The map display module provides accurate geographic information, the information reporting module supports the submission and temporary storage of instant help requests, the data management module ensures secure information storage, and the system interaction module optimizes the user experience, enabling smooth switching and data synchronization between modules.

Benefits of technology

It enables climbers to quickly seek help when they get lost and allows staff to efficiently track and assist them, improving climbing safety and scenic area management efficiency. It provides full-process anti-lost support and avoids functional gaps and information loss between modules.

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Abstract

The application belongs to the technical field of geographic information services, and discloses a mountaineer anti-lost early warning and tracking system, comprising the following modules: a map display module, an information reporting module, a data management module and a system interaction module. By constructing the four core modules of map display, information reporting, data management and system interaction, the pain points of inconvenience of carrying traditional paper maps, limited coverage and insufficient flexibility of fixed signboards can be effectively solved. The design of the information reporting module further strengthens the safety guarantee capability. When the mountaineer cannot judge the position or is in a positioning dilemma, the mountaineer can initiate help by uploading the photos of the surrounding environment to the system. In addition, if it is found that other personnel walk to a deep and undeveloped area or a high-risk area, the on-site photos can be taken and reported in time to avoid potential accidents such as getting lost or being in danger in advance, thereby playing the functions of active early warning and risk preposition intervention.
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Description

Technical Field

[0001] This invention belongs to the field of geographic information service technology, specifically a mountaineer anti-lost early warning and tracking system and method. Background Technology

[0002] As outdoor mountaineering gradually becomes a popular way for people to relax, exercise, and explore nature, the number of participants in mountaineering activities in various mountain scenic areas continues to grow. However, mountainous areas generally have problems such as complex terrain, dense vegetation, and uneven signal coverage. As a result, mountaineers often get lost due to unfamiliarity with the environment and misjudging the route.

[0003] Providing effective guidance to prevent climbers from getting lost and rapid tracking assistance after they do, has become a crucial need for ensuring the safety of mountaineering activities and improving the safety management level of scenic areas. Currently, some technical solutions for preventing climbers from getting lost have been applied, mainly covering traditional tools and some digital methods. Traditional solutions primarily rely on paper scenic area maps and fixed signs along the route, while digital solutions include simple location apps and basic navigation devices. However, existing technologies still have significant shortcomings in practical applications. Traditional paper maps are inconvenient to carry and cannot be updated in real time with dynamic information such as route adjustments, additions or closures of attractions within the scenic area. Fixed signs only cover the core tourist areas, often leaving gaps in directions on remote mountain routes or sections with complex terrain, making it difficult to meet the need for comprehensive anti-lost measures. The current digital solutions rely heavily on stable network environments for most location-based apps. In mountainous areas with weak or no networks, issues such as map loading failures and significant positioning errors are common. Furthermore, submitting requests for help often requires filling out cumbersome forms of information and lacks a data storage function, making it difficult for hikers to quickly complete the request in emergencies. Additionally, existing solutions generally lack systematic and structured management of reported requests for help, resulting in low efficiency for staff when querying key information such as the location of lost individuals and their surrounding environment. Moreover, the lack of effective integration between functions prevents the formation of a complete process from determining the hiker's location and requesting emergency assistance to staff tracking and aiding them. This makes it difficult to adequately address the diverse needs of hikers in lost situations and fails to provide efficient and comprehensive technical support for scenic area safety management. Therefore, improvements are needed. Summary of the Invention

[0004] The purpose of this invention is to provide a mountaineer anti-lost warning and tracking system and method to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a mountaineer anti-lost early warning and tracking system, comprising the following modules: a map display module, an information reporting module, a data management module, and a system interaction module;

[0006] The map display module is responsible for presenting complete geographical information of the scenic area, helping climbers to identify the surrounding environment and determine their own location, and providing basic geographical support to prevent getting lost.

[0007] The information reporting module is responsible for receiving help requests submitted by lost climbers, including scene descriptions and on-site photos, to ensure that the help requests are comprehensive and accurate.

[0008] The data management module is responsible for storing and maintaining various types of system data, including reported requests for help and basic information about the scenic area.

[0009] The system interaction module is responsible for optimizing the user experience and enabling smooth switching between various functional modules.

[0010] Preferably, the map display module includes a map data import unit, a scenic spot information marking unit, and a map interaction control unit; the map data import unit is used to receive and parse complete map data of the scenic area to ensure accurate geographical coordinates; the scenic spot information marking unit marks the accurate location coordinates, unique name identifiers, and high-definition on-site photos of all scenic spots at the corresponding coordinate positions on the map, and presents them using intuitive and visual icons. Clicking the icon displays detailed information about the scenic spot; the map interaction control unit develops map zoom, pan, and rotate functions, supporting climbers to adjust the display scale and angle.

[0011] Preferably, the information reporting module includes a location and situation description form unit, a scene photo upload unit, and a request for help information submission and temporary storage unit. The location and situation description form unit is designed with a standardized input form, including fields such as name, ID number, latitude and longitude of the lost location, altitude, and scene description, with clear filling instructions. The scene photo upload unit is compatible with common image formats and supports uploading multiple photos. The request for help information submission and temporary storage unit provides an instant submission function and also supports automatic information storage to avoid losing incomplete information and facilitate subsequent editing and submission.

[0012] Preferably, the data management module includes a reporting information storage unit, a scenic area basic information pre-storage unit, and a data query and processing unit; the reporting information storage unit is used to store the form information of the person seeking help and on-site photos; the scenic area basic information pre-storage unit stores the location coordinates, names, and high-definition photos of all scenic spots; the data query and processing unit supports querying information by submission time and lost area, and has data filtering, sorting, and export functions, and records the processing process and results of each piece of information.

[0013] Preferably, the system interaction module includes a function interface switching unit and an operation process optimization unit; the function interface switching unit has a clear switching entry, supports quick jump between the map display interface and the information reporting interface, and retains the operation state of the previous interface after switching; the operation process optimization unit simplifies the operation steps, arranges the form filling items in logical order, and uses eye-catching colors and larger sizes for key operation buttons.

[0014] Preferably, the map display module and the data management module achieve real-time data synchronization to ensure that the scenic spot information displayed on the map is consistent with the pre-stored basic scenic spot information; the data submitted by the information reporting module is transmitted to the data management module for storage in real time, and the data transmission process is encrypted to ensure the security of the help information.

[0015] Preferably, the form fields of the information reporting module are set with a format verification function to verify the validity of geographical coordinates, time, and numerical content, so as to avoid the submission of invalid information.

[0016] Preferably, the data management module's reporting information storage unit adopts a dual backup mechanism, storing the request for help information simultaneously on the main server and the backup server to prevent data loss.

[0017] A method for preventing mountaineers from getting lost and for tracking them, the method being used to implement the aforementioned mountaineer prevention and tracking system, includes the following steps:

[0018] S1. Project Preparation

[0019] Conduct on-site surveys of the scenic area, collect accurate location coordinates, detailed names, and high-definition photos of all attractions from multiple angles; select suitable development languages, database management systems, and map service interfaces according to system functional requirements, build a stable development environment, configure basic hardware facilities such as servers and network communication equipment, and set data storage security protocols and user access permission management rules.

[0020] S2, Map Function Setup

[0021] The map data import unit converts and parses the collected scenic area map data, imports it into the system, and verifies its integrity, promptly supplementing and correcting any missing or erroneous data. At the corresponding locations on the imported map data, the scenic spot information marking unit marks detailed information about all scenic spots, ensuring that the location coordinates are completely consistent with the actual scenic spots, associating them with scenic spot names and high-resolution photos, and using a unified and easily recognizable marker icon. The map interaction control unit develops map zoom, pan, and rotation functions, allowing users to set zoom ranges.

[0022] S3, Information Reporting Function Construction

[0023] The location and situation description form unit is designed to include a standardized form with multiple required fields, and all fields have input prompts and format validation. The on-site photo upload unit is designed to support common image formats such as JPG, PNG, and GIF. The help information submission and temporary storage unit is designed to provide real-time information submission functionality, with an automatic temporary storage interval of 30 seconds and support for manual temporary storage. Temporary storage information is stored in a local cache and automatically loaded when the interface is accessed again. Temporary storage information is retained for 72 hours.

[0024] S4. System Integration and Optimization Testing

[0025] The map display module, information reporting module, data management module, and system interaction module were technically integrated to ensure smooth data transmission and error-free function calls between modules. This included real-time data synchronization between the map display and data management modules, instant data transmission between the information reporting and data management modules, and smooth switching between functional interfaces in the system interaction module. A simulated test environment was built to simulate system operation under different network conditions, operating scenarios, and device types. This tested the accuracy of map display, the completeness of information reporting, data storage security, and the smoothness of interface switching. Testers simulated lost hikers conducting actual operation tests and recorded any issues. Based on the test results, the operation process was optimized, cumbersome steps were simplified, and system response speed was improved, ensuring that the response time for critical operations did not exceed 2 seconds. Interface operation instructions were supplemented, button positions and sizes were adjusted, and the logical order of forms was optimized.

[0026] S5, System Deployment and Subsequent Maintenance

[0027] The optimized system was deployed to a designated web server, and domain name resolution and access permissions were configured. After deployment, a full network access test was conducted to ensure that various terminals in different regions and network environments could access the system normally and use all functions. A scenic area information update mechanism was established, and a comprehensive review of the basic information of the scenic area was conducted every 3 months. If there were any changes to the scenic spot information, the relevant data was updated in a timely manner through the scenic area basic information pre-storage unit.

[0028] The beneficial effects of this invention are as follows:

[0029] By constructing four core modules—map display, information reporting, data management, and system interaction—the system effectively addresses the pain points of traditional paper maps being inconvenient to carry and fixed signs having limited coverage and insufficient flexibility. The information reporting module further enhances safety capabilities. When climbers are unable to determine their location or are stuck in a positioning predicament, they can take photos of their surroundings and upload them to the system to request help. In addition, if other people are found walking into undeveloped or high-risk areas in the mountains, photos can be taken and reported in a timely manner to prevent them from getting lost or encountering danger, thus providing proactive early warning and risk intervention. Ultimately, the four modules work together to build a solid defense for the personal safety of climbers and help scenic areas improve the quality, efficiency, and precision of safety management, promoting a shift in mountain safety assurance from "passive response" to "proactive prevention and control." Attached Figure Description

[0030] Figure 1 This is a system block diagram of the present invention;

[0031] Figure 2 This is a flowchart of the method of the present invention. Detailed Implementation

[0032] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0033] like Figures 1 to 2 As shown, this embodiment of the invention provides a mountaineer anti-lost early warning and tracking system, including the following modules: map display module, information reporting module, data management module, and system interaction module;

[0034] The map display module is responsible for presenting complete geographical information of the scenic area, helping climbers to identify their surroundings and determine their own location, and providing basic geographical support to prevent getting lost.

[0035] The information reporting module is responsible for receiving help requests submitted by lost climbers, including scene descriptions and on-site photos, to ensure that the help requests are comprehensive and accurate.

[0036] The data management module is responsible for storing and maintaining various types of system data, including reported requests for assistance and basic information about the scenic area;

[0037] The system interaction module is responsible for optimizing the user experience and enabling smooth switching between various functional modules.

[0038] By constructing four core modules—map display, information reporting, data management, and system interaction—the map display module addresses climbers' need for geographical information, the information reporting module fulfills the need to submit help requests when lost, the data management module ensures the secure storage and efficient flow of various types of information, and the system interaction module optimizes the user experience. These four modules form a functional closed loop, achieving full-process coverage from geographical information cognition, help request initiation, data processing to operation adaptation. This provides climbers with complete support from anti-lost warnings to seeking help after getting lost, and also lays the functional foundation for staff to subsequently track, locate, and provide precise assistance. It effectively avoids functional gaps caused by missing modules or unclear responsibilities, ensuring the overall logical coherence and practicality of the system, and comprehensively addressing the problems climbers may face related to getting lost in scenic areas.

[0039] The map display module includes a map data import unit, a scenic spot information marking unit, and a map interaction control unit. The map data import unit receives and parses complete map data of the scenic area to ensure accurate geographic coordinates. The scenic spot information marking unit marks the accurate location coordinates, unique name identifiers, and high-definition on-site photos of all scenic spots at the corresponding coordinate positions on the map, presented using intuitive and visual icons. Clicking the icons displays detailed information about the scenic spots. The map interaction control unit develops map zoom, pan, and rotate functions, allowing climbers to adjust the display scale and angle.

[0040] By accurately importing map data, visually marking scenic spot information, and providing flexible interactive controls, hikers can quickly and clearly understand the layout of the scenic area, efficiently determine their own location, and provide intuitive and reliable geographical information to prevent getting lost.

[0041] The information reporting module includes a location and situation description form, a site photo upload unit, and a request for help submission and storage unit. The location and situation description form is designed with a standardized input form, including fields for name, ID number, latitude and longitude of the location where the person went missing, altitude, and scene description, with clear instructions for filling it out. The site photo upload unit is compatible with common image formats and supports uploading multiple photos. The request for help submission and storage unit provides an instant submission function and also supports automatic storage of information to avoid losing incomplete information and facilitate subsequent editing and submission.

[0042] Standardized forms ensure comprehensive and accurate requests for help, support uploading photos in multiple formats, improve information integrity and upload efficiency, and include a temporary storage function to prevent information loss. This allows lost hikers to quickly submit complete requests for help, providing staff with sufficient information for precise assistance.

[0043] The data management module includes a reporting information storage unit, a scenic area basic information pre-storage unit, and a data query and processing unit. The reporting information storage unit stores the form information of those seeking help and on-site photos. The scenic area basic information pre-storage unit stores the location coordinates, names, and high-resolution photos of all scenic spots. The data query and processing unit supports querying information by submission time and lost area, and has data filtering, sorting, and export functions, recording the processing process and results of each piece of information.

[0044] By pre-storing comprehensive basic information about the scenic area to meet usage and assistance needs, and by setting up multi-condition query and data processing functions to improve information utilization efficiency, the system ensures the safe, complete and efficient flow of data.

[0045] The system interaction module includes a function interface switching unit and an operation process optimization unit. The function interface switching unit has a clear switching entry point, supports quick jump between the map display interface and the information reporting interface, and retains the operation state of the previous interface after switching. The operation process optimization unit simplifies the operation steps, arranges the form filling items in logical order, and uses eye-catching colors and larger sizes for key operation buttons.

[0046] The ability to quickly switch between interfaces while retaining the operation status improves the continuity of use, while simplifying the operation process and reducing the difficulty of operation with prominent button design.

[0047] The map display module and the data management module achieve real-time data synchronization to ensure that the scenic spot information displayed on the map is consistent with the pre-stored basic information of the scenic area; the data submitted by the information reporting module is immediately transmitted to the data management module for storage, and the data transmission process is encrypted to ensure the security of the request for help information.

[0048] Real-time data synchronization between modules ensures information consistency, while encrypted data transmission protects the security of assistance requests.

[0049] The information reporting module includes a form field format validation function that verifies the validity of geographic coordinates, time, and numerical fields to prevent invalid information from being submitted.

[0050] Form format validation can filter invalid information, reduce data processing redundancy, and improve system data quality and processing efficiency.

[0051] The data management module's reporting information storage unit adopts a dual backup mechanism, storing the request for help information on both the main server and the backup server to prevent data loss.

[0052] The dual backup mechanism can prevent the loss of help requests due to equipment failure, reduce data management risks, and provide reliable data support for aid work.

[0053] A method for preventing mountaineers from getting lost and for tracking them, the method being used to implement the aforementioned mountaineer prevention and tracking system, includes the following steps:

[0054] S1. Project Preparation

[0055] Conduct on-site surveys of the scenic area, collect accurate location coordinates, detailed names, and high-definition photos of all attractions from multiple angles; select suitable development languages, database management systems, and map service interfaces according to system functional requirements, build a stable development environment, configure basic hardware facilities such as servers and network communication equipment, and set data storage security protocols and user access permission management rules.

[0056] S2, Map Function Setup

[0057] The map data import unit converts and parses the collected scenic area map data, imports it into the system, and verifies its integrity, promptly supplementing and correcting any missing or erroneous data. At the corresponding locations on the imported map data, the scenic spot information marking unit marks detailed information about all scenic spots, ensuring that the location coordinates are completely consistent with the actual scenic spots, associating them with scenic spot names and high-resolution photos, and using a unified and easily recognizable marker icon. The map interaction control unit develops map zoom, pan, and rotation functions, allowing users to set zoom ranges.

[0058] S3, Information Reporting Function Construction

[0059] The location and situation description form unit is designed to include a standardized form with multiple required fields, and all fields have input prompts and format validation. The on-site photo upload unit is designed to support common image formats such as JPG, PNG, and GIF. The help information submission and temporary storage unit is designed to provide real-time information submission functionality, with an automatic temporary storage interval of 30 seconds and support for manual temporary storage. Temporary storage information is stored in a local cache and automatically loaded when the interface is accessed again. Temporary storage information is retained for 72 hours.

[0060] S4. System Integration and Optimization Testing

[0061] The map display module, information reporting module, data management module, and system interaction module were technically integrated to ensure smooth data transmission and error-free function calls between modules. This included real-time data synchronization between the map display and data management modules, instant data transmission between the information reporting and data management modules, and smooth switching between functional interfaces in the system interaction module. A simulated test environment was built to simulate system operation under different network conditions, operating scenarios, and device types. This tested the accuracy of map display, the completeness of information reporting, data storage security, and the smoothness of interface switching. Testers simulated lost hikers conducting actual operation tests and recorded any issues. Based on the test results, the operation process was optimized, cumbersome steps were simplified, and system response speed was improved, ensuring that the response time for critical operations did not exceed 2 seconds. Interface operation instructions were supplemented, button positions and sizes were adjusted, and the logical order of forms was optimized.

[0062] S5, System Deployment and Subsequent Maintenance

[0063] The optimized system was deployed to a designated web server, and domain name resolution and access permissions were configured. After deployment, a full network access test was conducted to ensure that various terminals in different regions and network environments could access the system normally and use all functions. A scenic area information update mechanism was established, and a comprehensive review of the basic information of the scenic area was conducted every 3 months. If there were any changes to the scenic spot information, the relevant data was updated in a timely manner through the scenic area basic information pre-storage unit.

[0064] The preliminary preparation phase involves on-site surveys of the scenic area to obtain accurate and comprehensive geographical and facility data, providing a reliable foundation for subsequent functional development. The development environment and hardware configuration ensure the stability of the system's technical base. The map function transforms geographical information display from data into a visual and interactive practical function, meeting the positioning needs of climbers. The information reporting function makes the submission of help requests more standardized, efficient, and lossless. System integration and optimization testing, through multi-scenario simulations and actual operation verification, identifies and resolves issues related to functional integration, response speed, and device compatibility, ensuring that the system meets performance standards before going live. This entire process ensures that the system can effectively achieve its core objectives of preventing people from getting lost, providing early warnings, and tracking, while also being able to cope with environmental changes and potential risks during long-term use, continuously providing reliable support for climbers and staff.

[0065] 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.

[0066] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A mountaineer anti-lost early warning and tracking system, characterized in that, It includes the following modules: map display module, information reporting module, data management module, and system interaction module; The map display module is responsible for presenting complete geographical information of the scenic area, helping climbers to identify the surrounding environment and determine their own location, and providing basic geographical support to prevent getting lost. The information reporting module is responsible for receiving help requests submitted by lost climbers, including scene descriptions and on-site photos, to ensure that the help requests are comprehensive and accurate. The data management module is responsible for storing and maintaining various types of system data, including reported requests for help and basic information about the scenic area. The system interaction module is responsible for optimizing the user experience and enabling smooth switching between various functional modules.

2. The mountaineer anti-lost early warning and tracking system according to claim 1, characterized in that: The map display module includes a map data import unit, a scenic spot information marking unit, and a map interaction control unit. The map data import unit receives and parses complete map data of the scenic area to ensure accurate geographical coordinates. The scenic spot information marking unit marks the accurate location coordinates, unique name identifiers, and high-definition on-site photos of all scenic spots at the corresponding coordinate positions on the map, presented using intuitive and visual icons. Clicking the icons displays detailed information about the scenic spots. The map interaction control unit develops map zoom, pan, and rotate functions, allowing users to adjust the display scale and angle.

3. The mountaineer anti-lost early warning and tracking system according to claim 1, characterized in that: The information reporting module includes a location and situation description form unit, a site photo upload unit, and a help request information submission and temporary storage unit. The location and situation description form unit is designed with a standardized input form, including fields such as name, ID number, latitude and longitude of the lost location, altitude, and scene description, with clear filling instructions. The on-site photo upload unit is compatible with common image formats and supports the upload of multiple photos; The request information submission and temporary storage unit provides an instant submission function, while also supporting automatic temporary storage of information to avoid the loss of incomplete information and facilitate subsequent editing and submission.

4. The mountaineer anti-lost early warning and tracking system according to claim 1, characterized in that: The data management module includes a reporting information storage unit, a scenic area basic information pre-storage unit, and a data query and processing unit. The reporting information storage unit is used to store the form information of the person seeking help and on-site photos; the scenic area basic information pre-storage unit stores the location coordinates, names, and high-definition photos of all scenic spots; the data query and processing unit supports querying information by submission time and lost area, and has data filtering, sorting, and export functions, and records the processing process and results of each piece of information.

5. The mountaineer anti-lost early warning and tracking system according to claim 1, characterized in that: The system interaction module includes a function interface switching unit and an operation process optimization unit; The functional interface switching unit has a clear switching entry point, supports quick jump between the map display interface and the information reporting interface, and retains the operation state of the previous interface after switching; the operation process optimization unit simplifies the operation steps, arranges the form filling items in logical order, and uses eye-catching colors and larger sizes for key operation buttons.

6. The mountaineer anti-lost early warning and tracking system according to claim 1, characterized in that: The map display module and the data management module achieve real-time data synchronization to ensure that the scenic spot information displayed on the map is consistent with the pre-stored basic scenic spot information; The data submitted by the information reporting module is transmitted to the data management module for storage in real time. The data transmission process is encrypted to ensure the security of the request for help information.

7. The mountaineer anti-lost early warning and tracking system according to claim 1, characterized in that: The information reporting module has a form field format validation function to verify the validity of geographic coordinates, time, and numerical fields, thus preventing the submission of invalid information.

8. A mountaineer anti-lost early warning and tracking system according to claim 1, characterized in that: The data management module's reporting information storage unit adopts a dual backup mechanism, storing the request for help information simultaneously on the main server and the backup server to prevent data loss.

9. A method for preventing mountaineers from getting lost and for tracking them, the method being used to implement the mountaineer prevention and tracking system according to any one of claims 1 to 8, characterized in that, Includes the following steps: S1. Project Preparation Conduct on-site surveys of the scenic area, collect accurate location coordinates, detailed names, and high-definition photos of all attractions from multiple angles; select suitable development languages, database management systems, and map service interfaces according to system functional requirements, build a stable development environment, configure basic hardware facilities such as servers and network communication equipment, and set data storage security protocols and user access permission management rules. S2, Map Function Setup The map data import unit converts and parses the collected scenic area map data, imports it into the system, and verifies its integrity, promptly supplementing and correcting any missing or erroneous data. At the corresponding locations on the imported map data, the scenic spot information marking unit marks detailed information about all scenic spots, ensuring that the location coordinates are completely consistent with the actual scenic spots, associating them with scenic spot names and high-resolution photos, and using a unified and easily recognizable marker icon. The map interaction control unit develops map zoom, pan, and rotation functions, allowing users to set zoom ranges. S3, Information Reporting Function Construction The location and situation description form unit is designed to include a standardized form with multiple required fields, and all fields have input prompts and format validation. The on-site photo upload unit is designed to support common image formats such as JPG, PNG, and GIF. The help information submission and temporary storage unit is designed to provide real-time information submission functionality, with an automatic temporary storage interval of 30 seconds and support for manual temporary storage. Temporary storage information is stored in a local cache and automatically loaded when the interface is accessed again. Temporary storage information is retained for 72 hours. S4. System Integration and Optimization Testing The map display module, information reporting module, data management module, and system interaction module are technically integrated to ensure smooth data transmission and error-free function calls between modules. This enables real-time data synchronization between the map display module and the data management module, instant data transmission between the information reporting module and the data management module, and smooth switching between function interfaces in the system interaction module. A simulated test environment is built to simulate system operation under different network conditions, different operating scenarios, and different device types. This tests the accuracy of map display, the completeness of information reporting, the security of data storage, and the smoothness of interface switching. Testers are organized to simulate lost climbers to conduct actual operation tests and record problems. Based on the test results, optimize the operation process, simplify cumbersome steps, improve system response speed, ensure that the response time of critical operations does not exceed 2 seconds, supplement the interface operation guide, adjust the button position and size, and optimize the form logic order; S5, System Deployment and Subsequent Maintenance The optimized system was deployed to a designated web server, and domain name resolution and access permissions were configured. After deployment, a full network access test was conducted to ensure that various terminals in different regions and network environments could access the system normally and use all functions. A scenic area information update mechanism was established, and a comprehensive review of the basic information of the scenic area was conducted every 3 months. If there were any changes to the scenic spot information, the relevant data was updated in a timely manner through the scenic area basic information pre-storage unit.