Mine personnel dynamic sign monitoring management guarantee system

By introducing a dynamic vital signs monitoring and management system into the mine, and integrating personal terminals on the mine lamp battery module for real-time monitoring and communication, combined with artificial intelligence analysis, the problem of insufficient on-site support in mine operations has been solved, and safe, efficient and intelligent management of personnel both above and below ground has been achieved.

CN122024399APending Publication Date: 2026-05-12赵虎
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
赵虎
Filing Date
2024-03-18
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Existing intelligent mining systems lack precise and detailed on-site support during mine operations, resulting in the inability to promptly detect or provide emergency care for workers suffering from sudden illnesses, and unresolved issues such as personnel loss of contact, local overcrowding, and the protrusion of harmful gases.

Method used

The mine personnel dynamic vital sign monitoring and management system is adopted, including information collection devices, personal terminals and communication devices, emergency early warning system and analysis and judgment system. Real-time monitoring and point-to-point communication are realized through personal terminals integrated on the mine lamp battery module, and data analysis and early warning are carried out in combination with artificial intelligence.

Benefits of technology

It has enabled precise coordination between surface and underground workers, timely and efficient information exchange and early warning, reduced personnel injuries caused by emergencies, and promoted intelligent management of mines.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the field of mine monitoring, and provides a mine personnel dynamic sign monitoring management guarantee system which comprises an information acquisition device, a personal terminal and communication device, an emergency early warning system and an analysis and judgment system. The information acquisition device comprises a module integrated in the personal terminal and other composition modules, the module integrated in the personal terminal comprises a vital sign monitoring underwear, the wrist, ankle and chest of the vital sign monitoring underwear are provided with sockets, acquisition devices are installed in the sockets, and the modules are connected with the personal terminal. The collected data is used for positioning data of human body vital sign parameters and relative positions; data acquired by the information acquisition device is uploaded to the analysis and judgment system through the personal terminal and the communication device, and the analysis and judgment system can start the emergency early warning system integrated in the personal terminal for processing; vital signs and underwear are combined, and point-to-point butt joint of ground and underground operating personnel is realized in a mode of gathering multiple functions to a personal terminal by upgrading a mine lamp.
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Description

Technical Field

[0001] This invention belongs to the field of mine monitoring, specifically a dynamic vital signs monitoring and management system for mine personnel. Background Technology

[0002] In dangerous and harsh work environments such as mines, the factors affecting the life, health, and safety of workers are diverse and complex. Threats to personal safety are caused by a combination of factors, including hazardous elements (energy sources) present throughout the work site, unsafe human factors (physiological fatigue, psychological complacency), and management deficiencies (the dangerous period before the closure of hazard identification and mitigation). These factors manifest in the actual work as a myriad of accident scenarios.

[0003] Current intelligent mining systems, relying on traditional operating models, lack precise and detailed on-site support. We aim to apply more research findings to the construction of intelligent and smart mines. Therefore, those skilled in the art have proposed a dynamic vital sign monitoring and management system for mine personnel to address the problems raised in the background section and achieve the following objectives:

[0004] 1. By monitoring personnel's vital signs and body position, we can prevent situations from escalating if workers suffer sudden illnesses and are not detected by other workers in the same area or if they are unable to receive timely and effective first aid.

[0005] 2. By upgrading the miners' lamps and integrating personal terminals into the lamp's battery module, real-time monitoring of worker trajectories, surrounding gas conditions, shock fluctuations, and relative positions can be achieved. This helps prevent injuries caused by issues such as localized overcrowding, loss of contact with personnel in emergencies, localized hazardous gas outbursts or accumulations at the work site, and rock bursts.

[0006] 3. Establish an early warning system to enable point-to-point communication between personnel above and below ground, facilitating timely, efficient, and accurate information exchange. Audio signal transmission will further enhance communication efficiency. When personnel are threatened by regional disasters, all potentially affected personnel must be evacuated promptly, accurately, and effectively (e.g., if signs of water inrush are detected, all personnel in the affected area must be evacuated immediately).

[0007] 4. Establish a database and use intelligent AI for retrieval and analysis, via point-to-point communication, to help operators resolve all kinds of unexpected accidents scientifically, systematically, and efficiently. Summary of the Invention

[0008] To address the aforementioned technical problems, this invention provides a dynamic vital sign monitoring and management system for mine personnel, which solves the problem that existing intelligent mining systems, relying on traditional operating modes, lack precise and detailed on-site support.

[0009] The mine personnel dynamic vital sign monitoring and management support system includes:

[0010] Information collection devices, personal terminals and communication devices, emergency early warning systems and analysis and judgment systems;

[0011] The information collection device includes a module integrated into a personal terminal and other component modules. The module integrated into the personal terminal includes a vital sign monitoring underwear. The vital sign monitoring underwear has ports at the wrist, ankle and chest, and a collection device is installed in the ports. The collected data is used to provide human vital sign parameters and relative position positioning data.

[0012] The data collected by the information collection device is uploaded to the analysis and judgment system via a personal terminal and communication device. After analysis by the analysis and judgment system, the emergency early warning system integrated in the personal terminal can be activated to take action.

[0013] Preferably, the information acquisition device further includes:

[0014] A portable gas monitoring device for monitoring ambient gas conditions, wherein the portable gas monitoring device is integrated into a personal terminal and communication device;

[0015] An impact monitoring device is used to monitor the impact of shock waves, and the impact monitoring device is integrated into a personal terminal and communication device.

[0016] A body position monitoring system, which is used to acquire data collected by vital sign monitoring underwear and monitor changes in body position based on the collected data;

[0017] A wireless transceiver base station is used for wireless data exchange with personal terminals;

[0018] The base station controller and interaction center are used for data interaction with the analysis system.

[0019] Preferably, the personal terminal and communication device include:

[0020] The personal terminal is equipped with a display screen, an emergency call button, a power button, a reset button, a buzzer, an impact detection port, a gas monitoring port, and a keypad call button.

[0021] A mining lamp module, which is equipped with a mining lamp low beam headlight assembly, a mining lamp high beam headlight, a light switch button, a photo button, a video recording button, and a camera;

[0022] The personal terminal and communication device also integrate an alarm reset button and a real-time buzzer alarm, an LCD digital display screen, and a flashing module built into the mining lamp in the emergency early warning system.

[0023] The personal terminal and communication device can synchronously realize real-time data exchange with the analysis and judgment system, keypad calls, impact detection, gas detection, underground daily lighting, audible and visual alarms, alarm reset, and automatic uploading of video recordings.

[0024] The personal terminal and communication device convert the information collected by the information collection device into digital information through the built-in integrated circuit, and upload the data to the nearby wireless transceiver base station through wireless transmission technology, and finally aggregate it to the base station controller and interaction center.

[0025] Preferably, the emergency early warning system includes:

[0026] A buzzer alarm is used for audible alerts.

[0027] Flashing lights are used to provide an alternating flashing alert from near and far distances.

[0028] Display devices used for text reminders and information interaction.

[0029] Preferably, the analysis and judgment system includes an external database and intelligence. The analysis and judgment system uses the external database to compare information collected by base stations distributed inside the mine, and uses intelligence to judge the vital signs and work behavior of mine personnel. It also feeds back abnormal results to the on-duty personnel and retrieves relevant information from the built-in database to propose handling opinions for the on-duty personnel's reference.

[0030] Preferably, the information collection device, personal terminal, and communication device are all equipped with positioning devices, which include personnel identification positioning cards and device identification positioning cards.

[0031] Preferably, the information collection device, personal terminal, and communication device all have built-in adapters to adapt to equipment from different manufacturers.

[0032] Preferably, the information collection device further includes a well-entry vehicle, which is equipped with a vehicle-mounted terminal.

[0033] Compared with the prior art, the present invention has the following beneficial effects:

[0034] 1. This invention combines vital signs and underwear, and integrates multiple functions into a personal terminal by upgrading the miner's lamp, thereby enabling point-to-point communication between surface and underground workers.

[0035] 2. This invention adds an adapter module to the information collection points of the equipment installed in the mine, allowing the equipment to collect data that was originally collected manually. Leveraging the advantages of artificial intelligence in efficiently and quickly calculating, searching, statistically analyzing, and processing large amounts of tedious and repetitive data, it minimizes the negative impact of human intervention on the three key elements of safe production. From macro to micro, it comprehensively and meticulously presents the mine from the inside out to the workers in the most intuitive way. From the present to the foreseeable future, the system simulates the mine through data calculations and presents it visually in the most intuitive way, thereby controlling everything controllable in the mine, achieving the short-term goal of safe production, and promoting the mine towards intelligent and unmanned mines. Attached Figure Description

[0036] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0037] Figure 2 For the present invention Figure 1 Schematic diagram of the structure of the vital signs monitoring underwear;

[0038] Figure 3 For the present invention Figure 1 A schematic diagram of the structure of a personal terminal and communication device.

[0039] In the picture:

[0040] A. Information collection device; A1. Module integrated into personal terminal; A1-1. Vital signs monitoring underwear; A1-2. Portable gas monitoring device; A1-3. Body position monitoring system; A1-4. Impact monitoring device; A2. Other component modules; A2-1. Wireless transceiver base station; A2-2. Base station controller and interaction center;

[0041] B. Personal Terminal and Communication Device; B1. Personal Terminal; B1-1. Display Screen; B1-2. Emergency Call Button; B1-3. Switch Button; B1-4. Reset Button; B1-5. Buzzer Horn; B1-6. Impact Detection Port; B1-7. Gas Monitoring Port; B1-8. Push-to-Talk Button; B2. Miner's Lamp Module; B2-1. Miner's Lamp Low Beam Headlight Assembly; B2-2. Miner's Lamp High Beam Headlight; B2-3. Light Switch Toggle Button; B2-4. Photo Button; B2-5. Video Recording Button; B2-6. Camera;

[0042] C. Emergency warning system; C1. Buzzer alarm; C2. Flashing lights; C3. Display device;

[0043] D. Analysis and judgment system; D1. External database; D2. Intelligent AI. Detailed Implementation

[0044] The embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of the invention.

[0045] Example 1: As shown in the attached document Figure 1 To be continued Figure 3 As shown: This invention provides a dynamic vital sign monitoring and management system for mine personnel, including:

[0046] Information collection device A, personal terminal and communication device B, emergency early warning system C and analysis and judgment system D;

[0047] The information collection device A includes a module A1 integrated in a personal terminal and other component modules A2. The module A1 integrated in the personal terminal includes a vital sign monitoring underwear A1-1. The vital sign monitoring underwear A1-1 has ports at the wrist, ankle and chest. A collection device is installed in the port. The collected data is used to provide human vital sign parameters and relative position positioning data.

[0048] Data collected by information collection device A is uploaded to analysis and judgment system D via personal terminal and communication device B. After analysis by analysis and judgment system D, the emergency early warning system C integrated in personal terminal B1 can be activated to take action.

[0049] As can be seen from the above, by combining vital signs with underwear and upgrading the miner's lamp to integrate multiple functions into a personal terminal, point-to-point communication between surface and underground workers can be achieved.

[0050] Information acquisition device A also includes:

[0051] Portable gas monitoring device A1-2 is used to monitor the surrounding gas conditions. Portable gas monitoring device A1-2 is integrated into personal terminal and communication device B.

[0052] Impact monitoring device A1-4 is used to monitor the impact of shock waves. Impact monitoring device A1-4 is integrated into personal terminal B1 and communication device B.

[0053] The body position monitoring system A1-3 is used to acquire data collected by the vital signs monitoring underwear A1-1, and monitor changes in the body position of the person based on the collected data. At the same time, it establishes a human standing model based on the relative data established within a standard duration of the personal terminal being turned on (this duration is revised by the intelligent AID2), which serves as the basis for human body position monitoring.

[0054] The wireless transceiver base station A2-1 is used for wireless data interaction with personal terminals.

[0055] The base station controller and interaction center A2-2 is used for data interaction with the analysis system.

[0056] Personal terminal and communication device B includes:

[0057] The personal terminal B1 is equipped with a display screen B1-1, an emergency call button B1-2, a power switch button B1-3, a reset button B1-4, a buzzer horn B1-5, an impact detection port B1-6, a gas monitoring port B1-7, and a keypad intercom button B1-8. The control, signal reception, gas monitoring, and emergency call functions of the personal terminal are integrated into the lithium battery module of the mine explosion-proof lighting lamp. This avoids the problem of separation between the person and the card after entering the work site, as with traditional positioning cards, and also addresses the requirement for the personal terminal B1 to enter hazardous areas (the lithium battery module voltage of the mine explosion-proof lighting lamp should not exceed 6V, and the current should not exceed 1.5A). The emergency call and two-way communication module is implemented via a keypad intercom button mounted on the battery module. An audible and visual alarm device is integrated into the mine lamp. When the terminal issues a warning, the mine lamp uses flashing and buzzing to alert the worker. The worker can switch from warning mode to normal mode using the reset button B1-4 located on the side of the mine lamp. Warning messages (such as being in a dangerous area and needing emergency evacuation, or abnormal vital signs and needing emergency ascent to the surface) are displayed on the built-in screen B1-1 of the personal terminal. A miniature camera B2-6 is also built into the miner's lamp; workers can reset, take photos, and record video using three buttons side-by-side on the lampshade. The acquired image information is transmitted to a surface database in real time. Workers can obtain data support from the surface through two-way emergency communication, or retrieve data from the database after surfacing to fulfill operational needs such as data reporting. By utilizing the gas monitoring device built into the B1 personal terminal, the safety monitoring system deployed in the roadway, the sensors built into the equipment (such as the pressure monitoring system of the hydraulic support), the signal interaction device built into the digital roof delamination meter (a system for monitoring the amount of delamination in the roadway), and the information interaction devices at key hydrogeological monitoring locations (such as hydrogeological observation holes outside the sealed walls of the closed roadway, and pressure gauges at the orifice of the roof drainage holes), as well as data collected from surface geological exploration, combined with underground and surface microseismic technology and mine geological data built into the database, a simulated three-dimensional model of the mine (including the mine operation model, the underground stage model, and the final mine model) is obtained. This provides a comprehensive perspective based on the mining machine, enabling accident control from the source and obtaining more management data.

[0058] The miner's lamp module B2 is equipped with a miner's lamp low beam light group B2-1, a miner's lamp high beam headlight B2-2, a light switch toggle button B2-3, a photo button B2-4, a video recording button B2-5, and a camera B2-6.

[0059] The personal terminal and communication device B also integrates alarm reset buttons B1-4 and a real-time buzzer alarm C1 in the emergency early warning system C, an LCD digital display screen, and a flashing module built into the mining lamp.

[0060] Personal terminal and communication device B can synchronously realize real-time data exchange, keypad communication, impact detection, gas detection, underground daily lighting, audible and visual alarms, alarm reset, and automatic uploading of video recordings with analysis and judgment system D.

[0061] Personal terminal and communication device B converts the information collected by information collection device A into digital information through its built-in integrated circuit, and uploads the data to the nearby wireless transceiver base station A2-1 through wireless transmission technology, and finally aggregates it to the base station controller and interaction center A2-2.

[0062] Emergency warning system C includes:

[0063] Buzzer alarm C1 is used for sound alerts;

[0064] C2 is a light flashing indicator used for alternating flashing at varying distances as a reminder.

[0065] Display device C3 is used for text reminders and information interaction.

[0066] The analysis and judgment system D includes an external database D1 and intelligence. The analysis and judgment system D uses the external database D1 to compare the information collected by base stations distributed inside the mine, and uses intelligence to judge the vital signs and work behavior of mine personnel. It also feeds back abnormal results to the on-duty personnel and retrieves relevant information from the built-in database to propose handling opinions for the on-duty personnel's reference.

[0067] The information collection device A and the personal terminal and communication device B are all equipped with positioning devices, which include personnel identification positioning cards and device identification positioning cards.

[0068] Information acquisition device A and personal terminal / communication device B both have built-in adapters for compatibility with equipment from different manufacturers. Adapter modules are also embedded in the equipment entering the well, allowing equipment from different manufacturers to be integrated into the underground intelligent monitoring network, thus enabling surface monitoring of the equipment's status (including but not limited to vehicles entering the well). Anomaly data analysis using the system's built-in database provides precise and efficient maintenance and repair. Machine vision technology and trajectory analysis maps for personnel, vehicles, and equipment are also incorporated. Relying on personnel identification and positioning cards and similar vehicle (equipment) identification and positioning cards, various underground operations can be effectively located on a 3D interactive model, and trajectory analysis maps can prevent mutual interference between different tasks. It can also provide rapid and efficient solutions for various emergencies occurring underground. Industrial screens equipped with robotic arms, deployed in key work areas, can use machine vision technology to perform functions such as equipment pose detection, roadway formation detection, support effectiveness analysis, and unauthorized personnel entry alarms, thereby achieving comprehensive control over personnel safety, equipment status, environmental analysis, and engineering quality assurance in key and challenging work areas.

[0069] Information collection device A also includes a vehicle that enters the well, and an on-board terminal is installed inside the vehicle.

[0070] As can be seen from the above, by embedding a database and using intelligent AI2, the data that was originally collected manually underground is now handled by equipment. Leveraging the advantages of artificial intelligence in efficiently and quickly calculating, searching, statistically analyzing, and processing large amounts of tedious and repetitive data, the negative impact of human intervention in the three key elements of safe production is minimized. From macro to micro perspectives, the system meticulously presents the mine from the inside out to the workers in the most intuitive way. Looking from the present to the foreseeable future, the system simulates the mine through data calculations, presenting it visually in the most intuitive way, thereby controlling everything controllable in the mine, achieving the short-term goal of safe production, and advancing the mine towards intelligent and unmanned mines.

[0071] Example 2: The following simulated scenario illustrates the above functions:

[0072] 1. Worker A, due to years of working underground, was found to have high blood pressure (1-54 / 108 mmHg) during his annual health check-up, but it could not yet be diagnosed as hypertension. After the occupational health check-up report was entered into the external database D1, the intelligent AID2 updated worker A's data and placed him under key monitoring. One day, worker A fainted due to high blood pressure during normal work. The body position monitoring system A1-3 (relative position change and determined to be supine) detected the abnormal body position of worker A, and the data uploaded by the vital signs monitoring system showed that worker A's heart rate and pulse were increased. The intelligent AID2 determined that worker A fainted due to hypertension. Through analysis of heart rate and pulse, it was determined that there was no immediate risk of death. To prevent secondary dangers, an emergency warning was activated, and worker A's personal terminal issued a buzzer alarm C1, while his personal miner's lamp flashed. Simultaneously, worker B, working 80 meters away, issued a buzzer alarm C1 on his personal terminal, while his personal miner's lamp flashed. Worker B checked the LCD digital display and confirmed that the alarm was due to worker A's hypertension fainting, requiring immediate assistance. After clearing the alarm using the reset button B1-4, proceed to worker A's work location and, under ground guidance, provide scientific first aid to worker A via the button-operated intercom module.

[0073] When the personal terminal and communication device B detects hazardous data at the impact detection port B1-6 and the gas detection port as shown in the figure, the buzzer alarm C1 sounds. The data is simultaneously uploaded to the wireless transceiver base station A2-1 and ultimately aggregated to the base station controller and interaction center A2-2.

[0074] The following simulation scenario illustrates the above functions:

[0075] A certain mine has been identified as a coal and gas outburst mine with the potential for rockburst. This geological data has been promptly uploaded to the database. One day, worker A was working downwind of a return airway conveyor belt. His personal smart terminal detected excessive CO levels in the air, triggering a buzzer alarm (C1). Simultaneously, abnormal CO data was uploaded to a nearby wireless transceiver base station (A2-1), and finally aggregated to the base station controller and interaction center (A2-2). Worker A, hearing alarm C1, checked his personal terminal and confirmed it was a CO alarm. He determined it was a false alarm due to his downwind location, reset the terminal, and continued working. The smart AID2 system determined that the uploaded CO level exceeded the normal value, and that worker A's pulse was higher than normal, along with elevated body temperature, suggesting possible CO poisoning. An emergency warning was issued. Simultaneously, worker A's miner's lamp flashed, triggering alarm C1. After clearing the alarm, worker A checked his personal terminal, which displayed "Evacuate to the intake airway." He then stopped working and evacuated along the emergency escape route to the intake airway. Meanwhile, at the machine head, gas inspector B and conveyor belt inspector C's miner lamps flashed, and the terminal emitted a C1 alarm. After resetting, gas inspector B checked the display and found that CO levels were excessive on the downwind side, while the rest of the area was normal. Inspector B and inspector C were instructed to check along the line. Approximately 300 meters downwind, gas inspector B and inspector C discovered that worker D had parked his vehicle in the connecting roadway but had not turned off the engine, and was working on the upwind side. Gas inspector B confirmed that CO levels were excessive on the downwind side of the vehicle and ordered worker D to turn off the engine, using the miner lamp's photographic function as evidence. After worker D turned off the engine, the air quality downwind quickly returned to normal.

[0076] It is important to note that the constructions and arrangements of this application shown in several different exemplary embodiments are merely illustrative. Although only a few embodiments are described in detail in this disclosure, those who consult this disclosure will readily understand that many modifications are possible (e.g., changes in the size, dimensions, structure, shape, and proportions of various elements, as well as parameter values ​​(e.g., temperature, pressure, etc.), installation arrangements, use of materials, color, orientation, etc.) without substantially departing from the novel teachings and advantages of the subject matter described in this application). For example, an element shown as integrally formed may be composed of multiple parts or elements, the position of elements may be inverted or otherwise altered, and the nature or number or position of discrete elements may be changed or altered. Therefore, all such modifications are intended to be included within the scope of the invention. The order or sequence of any process or method steps may be changed or rearranged according to alternative embodiments. In the claims, any "device plus function" clause is intended to cover the structure described herein that performs the function, and not only structurally equivalent but also equivalent in structure. Other substitutions, modifications, changes, and omissions may be made in the design, operation, and arrangement of the exemplary embodiments without departing from the scope of the invention. Therefore, the present invention is not limited to the specific embodiments, but extends to various modifications that still fall within the scope of the appended claims.

[0077] Furthermore, in order to provide a concise description of exemplary embodiments, not all features of actual embodiments (i.e., those features that are not relevant to the best mode of carrying out the invention as currently considered, or those features that are not relevant to implementing the invention) may be omitted.

[0078] It should be understood that numerous specific implementation decisions can be made during the development of any actual implementation method, and in any engineering or design project. Such development efforts may be complex and time-consuming, but for those of ordinary skill in the art who benefit from this disclosure, the development effort will be a routine work of design, manufacturing, and production without requiring much experimentation.

[0079] The embodiments of the present invention are given for the purposes of illustration and description. Although embodiments of the present invention have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present invention.

Claims

1. A dynamic vital sign monitoring and management system for mine personnel, characterized in that, include: Information collection device (A), personal terminal and communication device (B), emergency early warning system (C), and analysis and judgment system (D); The information collection device (A) includes a module (A1) integrated in a personal terminal and other component modules (A2). The module (A1) integrated in the personal terminal includes a vital sign monitoring underwear (A1-1). The vital sign monitoring underwear (A1-1) has ports at the wrist, ankle and chest. A collection device is installed in the ports. The collected data is used to obtain human vital sign parameters and relative position positioning data. The data collected by the information collection device (A) is uploaded to the analysis and judgment system (D) via the personal terminal and communication device (B). After analysis by the analysis and judgment system (D), the emergency early warning system (C) integrated in the personal terminal can be activated to process the data.

2. The mine personnel dynamic vital sign monitoring and management support system as described in claim 1, characterized in that: The information acquisition device (A) also includes: A portable gas monitoring device (A1-2) is used to monitor the surrounding gas conditions. The portable gas monitoring device (A1-2) is integrated into a personal terminal and communication device (B). An impact monitoring device (A1-4) is used to monitor the impact of shock waves. The impact monitoring device (A1-4) is integrated inside a personal terminal and communication device (B). A body position monitoring system (A1-3) is used to acquire data collected by the vital signs monitoring underwear (A1-1) and monitor changes in body position based on the acquired data. The wireless transceiver base station (A2-1) is used for wireless data interaction with the personal terminal (B1); The base station controller and interaction center (A2-2) is used for data interaction with the analysis system.

3. The mine personnel dynamic vital sign monitoring and management support system as described in claim 1, characterized in that: The personal terminal and communication device (B) include: A personal terminal (B1) is provided with a display screen (B1-1), an emergency call button (B1-2), a power button (B1-3), a reset button (B1-4), a buzzer horn (B1-5), an impact detection port (B1-6), a gas monitoring port (B1-7), and a keypad call button (B1-8). The miner's lamp module (B2) is equipped with a miner's lamp low beam lamp group (B2-1), a miner's lamp high beam headlight (B2-2), a light switch switch button (B2-3), a photo button (B2-4), a video recording button (B2-5), and a camera (B2-6); The personal terminal and communication device (B) also integrates an alarm reset button (B1-4) and a real-time buzzer alarm (C1) in the emergency warning system (C), an LCD digital display screen, and a flashing module built into the mining lamp; The personal terminal and communication device (B) can synchronously realize real-time data exchange, keypad calls, impact detection, gas detection, underground daily lighting, audible and visual alarms, alarm reset, and automatic uploading of video recordings with the analysis and judgment system (D); The personal terminal and communication device (B) converts the information collected by the information collection device (A) into digital information through the built-in integrated circuit, and uploads the data to the nearby wireless transceiver base station (A2-1) through wireless transmission technology, and finally aggregates it to the base station controller and interaction center (A2-2).

4. The mine personnel dynamic vital sign monitoring and management support system as described in claim 1, characterized in that: The emergency warning system (C) includes: A buzzer alarm (C1) is used for audible alerts; Light flashing (C2) is used for alternating flashing at varying distances to provide a reminder; Display device (C3) is used for text prompts and information interaction.

5. The mine personnel dynamic vital sign monitoring and management support system as described in claim 1, characterized in that: The analysis and judgment system (D) includes an external database (D1) and an intelligent AI (D2). The analysis and judgment system (D) uses the external database (D1) to compare the information collected by base stations distributed inside the mine with the intelligent AI (D2) to judge the vital signs and work behavior of the mine personnel, and feeds back abnormal results to the on-duty personnel. It also retrieves relevant information from the built-in database and proposes processing opinions for the on-duty personnel to refer to.

6. The mine personnel dynamic vital sign monitoring and management support system as described in claim 1, characterized in that: Both the information collection device (A) and the personal terminal and communication device (B) are equipped with positioning devices, which include personnel identification positioning cards and device identification positioning cards.

7. The mine personnel dynamic vital sign monitoring and management support system as described in claim 2, characterized in that: Both the information collection device (A) and the personal terminal and communication device (B) have built-in adapters for compatibility with equipment from different manufacturers.

8. The mine personnel dynamic vital sign monitoring and management support system as described in claim 2, characterized in that: The information collection device (A) also includes a well-entry vehicle, which is equipped with a vehicle-mounted terminal.