Communication system and method for intelligent wearable protective equipment for mines
Through the communication system of intelligent wearable protective equipment for mines, data intercommunication and functional linkage between devices are realized, and the fan speed is dynamically adjusted. This solves the problems of low dust prevention efficiency of mining dust masks and independent operation of equipment, improves the dust prevention effect and equipment linkage, and protects the health of mine workers.
Patent Information
- Application Number
- CN202411530033.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-30
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2044-10-30
AI Technical Summary
Existing mining dust masks are unable to dynamically adjust the fan speed according to the ambient dust concentration and the health parameters of mine personnel, resulting in low dust prevention efficiency and poor functional redundancy and linkage due to the independent operation of the equipment.
Through the communication system of intelligent wearable protective equipment for mining, data intercommunication is achieved between intelligent dust masks for mining, intelligent wearable system control platform for mining, intrinsically safe mobile phone terminals for mining, intrinsically safe mining lamps for mining and intelligent wearable wristband devices for mining, dynamic adjustment of fan speed and realization of functional linkage.
It realizes the dynamic adjustment of the fan speed of mining dust masks, improves the dust prevention efficiency, extends the service life, and protects the health of mine workers through the linkage between equipment.
Smart Images

Figure CN119402022B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of intelligent mine communications, and in particular relates to a communication system and method for intelligent wearable protective equipment for mines. Background Art
[0002] Coal mines, especially underground coal mines, face challenges such as limited space and harsh environments. Coal mine dust, characterized by high concentrations, small particle size, and high silica content, can cause irreversible harm to workers, such as pneumoconiosis. Current dust control methods primarily include source reduction, path-by-path dust reduction, path-by-path dust control, centralized dust removal, and individual dust prevention.
[0003] Individual dust protection methods in coal mines primarily include traditional masks and powered air dust masks. On the one hand, powered air dust masks generally use a fixed fan speed and cannot dynamically adjust to the surrounding environment and the health parameters of mine personnel. This leads to problems such as high breathing resistance, short use time, and high exhaled condensation, resulting in low dust protection efficiency. On the other hand, current mining dust masks and other mining smart wearable devices and terminals are standalone devices without communication capabilities, and cannot exchange data or interact with other devices.
[0004] In terms of individual dust protection in coal mines, the current mining dust masks have the following technical problems:
[0005] (1) Low intelligence level: Traditional mining powered air dust masks cannot adjust the fan speed, or cannot automatically and dynamically adjust the fan speed according to factors such as the concentration or concentration change of ambient dust, the health status (parameters) of mine personnel, etc. When the dust concentration is low, it will cause the equipment to overwork, resulting in power waste; when the dust concentration is high, the mismatched speed will lead to poor dust filtration effect.
[0006] (2) Lack of functional linkage between devices: Currently, different devices work independently, and the "island" phenomenon is widespread. Data cannot be communicated, resulting in functional redundancy and poor linkage between different devices. Summary of the Invention
[0007] In response to the problems existing in the above-mentioned coal mine intelligent wearable protection system, the present invention proposes a communication system and method for intelligent wearable protection equipment for mines. Through data intercommunication between different devices, functional linkage between communication systems is realized, thereby achieving more intelligent and efficient dust prevention and protecting the health of personnel.
[0008] The first aspect of the present invention provides a communication system for intelligent wearable protective equipment for mining, which includes an intelligent dust mask for mining and at least one of the following: an intelligent wearable system control platform for mining, an intrinsically safe mobile phone terminal for mining, an intrinsically safe mining lamp for mining, an intrinsically safe intelligent wearable wristband device for mining, and a mining communication network; wherein,
[0009] Intelligent dust masks for mining, used for at least one of dust filtration, dust concentration detection, fan speed adjustment, fan speed detection, communication and positioning;
[0010] Mine smart wearable system control platform, used to receive and analyze communication data information and send communication scheduling information;
[0011] Mine-use intrinsically safe smart wearable wristband device, used for collecting health parameters of mine personnel and sending and receiving communication data information;
[0012] Mine-use intrinsically safe mobile phone terminal, used to generate, send and receive communication data information;
[0013] Intrinsically safe mining lamps for use in mines, used for at least one of lighting, gas concentration detection, dust concentration detection, communication, and positioning;
[0014] The mine communication network is used to realize information transmission between the communication systems of the mine intelligent wearable protective equipment.
[0015] Preferably, the intelligent dust mask for mining includes at least one of the following: a fan device, a fan speed sensor, a dust filtering device, a dust concentration detection sensor, a communication device and a positioning device; wherein,
[0016] The fan speed sensor is used to detect the speed of the fan device; the dust concentration detection sensor is used to detect the dust concentration in the environment; the communication device is used to send and receive communication data and / or control information; and the positioning device is used to implement a positioning function.
[0017] Preferably, the intrinsically safe mining lamp for mining includes at least one of the following: a lighting device, a gas concentration detection sensor, a dust concentration detection sensor, a communication device, and a positioning device;
[0018] Among them, the gas concentration detection sensor is used to detect the concentration of gas in the environment; the dust concentration detection sensor is used to detect the dust concentration in the environment; the communication device is used to send and receive communication data and / or control information; and the positioning device is used to realize the positioning function.
[0019] Preferably, the mining intelligent dust mask is used for dust concentration detection and includes:
[0020] The intelligent dust mask for mining directly detects the dust concentration through a dust concentration detection sensor or indirectly detects the dust concentration through a fan speed measured by a fan speed sensor.
[0021] Preferably, the intelligent dust mask for mining is used to adjust the fan speed, including:
[0022] The intelligent dust mask for mining automatically adjusts the fan speed according to at least one of the position information, the health parameter information of the mine personnel, and the dust concentration information.
[0023] Preferably, the intelligent dust mask for mining automatically adjusts the fan speed according to the position information, including:
[0024] Get location information;
[0025] Determine coal mine working face information based on the acquired location information;
[0026] The fan speed is determined based on a predefined correspondence between the coal mine working face information and the fan speed.
[0027] Preferably, the acquiring location information includes:
[0028] The location information is the location information received from at least one of the mining intelligent wearable system control platform, the mining intrinsically safe mobile phone terminal, the mining intrinsically safe mining lamp or the mining intrinsically safe intelligent wearable wristband device sent through the mining communication network, or the location information obtained through the positioning device in the mining intelligent dust mask.
[0029] Preferably, the intelligent dust mask for mining automatically adjusts the fan speed according to the health parameter information of the mine personnel, including:
[0030] Obtaining health parameter information of mine personnel collected by the mine intrinsically safe smart wearable wristband device;
[0031] A first action of adjusting the fan speed is determined according to the mine personnel health parameter information.
[0032] Preferably, the mine personnel health parameters include at least one of blood oxygen, heart rate, blood pressure, respiratory rate, and respiratory quality.
[0033] Preferably, the first action of determining the fan speed adjustment according to the mine personnel health parameter information includes:
[0034] Determining the fan speed according to a predefined correspondence between the mine personnel health parameter and the fan speed; or,
[0035] Determine the fan speed according to the fluctuation value of the mine personnel health parameter within the first time interval; or,
[0036] The fan speed is determined according to a relationship between the mine personnel health parameter and a first threshold value.
[0037] Preferably, determining the fan speed according to a predefined correspondence between the mine personnel health parameter and the fan speed includes:
[0038] Determining the interval range within which the value of the mine personnel health parameter lies;
[0039] Determine the fan speed corresponding to the interval range according to the predefined corresponding relationship;
[0040] Adjust the fan speed to a fan speed within the specified range.
[0041] Preferably, determining the fan speed according to the fluctuation value of the mine personnel health parameter within the first time interval includes:
[0042] Obtaining a fluctuation value of the mine personnel health parameter within the first time interval;
[0043] determining a fan speed adjustment range according to the fluctuation value and the unit fluctuation granularity;
[0044] Adjust the fan speed according to the fan speed adjustment range.
[0045] Preferably, determining the fan speed according to the relationship between the mine personnel health parameter and the first threshold value includes:
[0046] Obtaining the value of the mine personnel health parameter;
[0047] A first action is determined according to a relationship between the value of the health parameter and a first threshold value.
[0048] Preferably, determining the first behavior according to the relationship between the value of the health parameter and the first threshold value includes:
[0049] If the value of the health parameter is greater than or equal to a first threshold value, the fan speed is adjusted upward by one order of magnitude;
[0050] If the value of the health parameter is less than the first threshold, the fan speed is adjusted downward by one order of magnitude.
[0051] Preferably, the intelligent dust mask for mining automatically adjusts the fan speed according to the dust concentration information, including:
[0052] Obtain dust concentration information;
[0053] The fan speed is determined based on a predefined correspondence between the dust concentration information and the fan speed.
[0054] Preferably, obtaining dust concentration information includes:
[0055] The dust concentration information is the dust concentration detected by the dust concentration detection sensor in the mining intelligent dust mask, or the dust concentration detected by the received mining intrinsically safe mining lamp and sent to the mining intelligent dust mask through the mining communication network.
[0056] Preferably, the mining communication network adopts at least one communication technology of Bluetooth, WiFi, 5G, 4G, Sidelink, and Star Flash.
[0057] Preferably, the communication mode in the system adopts a polling-type periodic transmission mode or a trigger-based aperiodic transmission mode.
[0058] Preferably, a first resource is reserved for performing a first operation; wherein,
[0059] The first resource is a time domain resource reserved with a first period value;
[0060] The first operation is sending emergency warning information.
[0061] A second aspect of the present invention provides a communication method for intelligent wearable protective equipment for mining, which is applied to the above-mentioned communication system for intelligent wearable protective equipment for mining, and the method comprises:
[0062] Information transmission is achieved between the mining smart dust mask and at least one of the following items through the mining communication network: a mining smart wearable system control platform, a mining intrinsically safe mobile phone terminal, a mining intrinsically safe mining lamp, a mining intrinsically safe smart wearable wristband device and a mining communication network; wherein,
[0063] Intelligent dust masks for mining, used for at least one of dust filtration, dust concentration detection, fan speed adjustment, fan speed detection, communication and positioning;
[0064] Mine smart wearable system control platform, used to receive and analyze communication data information and send communication scheduling information;
[0065] Mine-use intrinsically safe smart wearable wristband device, used for collecting health parameters of mine personnel and sending and receiving communication data information;
[0066] Mine-use intrinsically safe mobile phone terminal, used to generate, send and receive communication data information;
[0067] Intrinsically safe mining lamps for use in mines, used for at least one of lighting, gas concentration detection, dust concentration detection, communication, and positioning;
[0068] The mine communication network is used to realize information transmission between the communication systems of the mine intelligent wearable protective equipment.
[0069] The third aspect of the present invention provides an electronic device, including a processor and a memory, wherein the memory is used to store instructions; the processor is used to execute the instructions to complete the communication method of the intelligent wearable protective equipment for mining described in the second aspect of the present invention.
[0070] The fourth aspect of the present invention provides a computer-readable storage medium, which stores instructions. When the instructions are executed, the communication method based on the intelligent wearable protective equipment for mining described in the second aspect of the present invention is executed.
[0071] Compared with the prior art, the present invention has the following beneficial effects:
[0072] (1) The fan speed of the intelligent dust mask for mining can be dynamically and automatically adjusted based on environmental monitoring data or the health characteristics of mine workers, thereby maximizing the working time of the dust mask for mining while ensuring the dust prevention effect;
[0073] (2) It can enable data intercommunication between at least one of the mine-used smart wearable system control platform, the mine-used intrinsically safe mobile phone terminal, the mine-used intrinsically safe mining lamp, the mine-used smart wearable wristband device and the mine-used smart dust mask, thereby realizing functional linkage between different devices and protecting the health of mine workers to the greatest extent. BRIEF DESCRIPTION OF THE DRAWINGS
[0074] Figure 1 This is a preferred but non-restrictive communication architecture for the communication system of the intelligent wearable protective equipment for mining of the present invention;
[0075] Figure 2 Another preferred but non-limiting communication architecture mine for the communication system of the intelligent wearable protective equipment for mines of the present invention;
[0076] Figure 3 This is another preferred but non-limiting communication architecture mine for the communication system of the intelligent wearable protective equipment for mining of the present invention;
[0077] Figure 4 It is the mining intelligent dust mask architecture of the mining intelligent wearable protective equipment communication system of the present invention;
[0078] Figure 5 is the correspondence between heart rate and speed;
[0079] Figure 6 A first resource allocation method for the communication system of the intelligent wearable protective equipment for mining of the present invention;
[0080] Figure 7 This is another first resource allocation method of the communication system of the mining intelligent wearable protective equipment of the present invention. DETAILED DESCRIPTION
[0081] To make the objectives, technical solutions, and advantages of the present invention more clear, the technical solutions of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. The embodiments described in this application are only part of the embodiments of the present invention, not all of them. Based on the spirit of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0082] Embodiment 1 of the present invention provides a communication system for intelligent wearable protective equipment for mining, including an intelligent dust mask for mining, an intelligent wearable system control platform for mining, an intrinsically safe mobile phone terminal for mining, an intrinsically safe mining lamp for mining, an intrinsically safe intelligent wearable wristband device for mining, and a mining communication network; wherein,
[0083] Intelligent dust masks for mining, used for at least one of dust filtration, dust concentration detection, fan speed adjustment, fan speed detection, communication and positioning, that is, supporting at least one of the functions of dust filtration, dust concentration detection, fan speed adjustment, fan speed detection, communication and positioning;
[0084] Mine smart wearable system control platform, used to receive and analyze communication data information and send communication scheduling information;
[0085] Mine intrinsically safe smart wearable wristband device, used for collecting health parameters of mine personnel and sending and receiving communication data information. The mine intrinsically safe smart wearable wristband device can be a mine intrinsically safe smart watch, a mine intrinsically safe smart bracelet or other forms of mine intrinsically safe wristband device;
[0086] Mine-use intrinsically safe mobile phone terminal, used to generate, send and receive communication data information;
[0087] Intrinsically safe mining lamps for use in mines, used for at least one of lighting, gas concentration detection, dust concentration detection, communication, and positioning, that is, supporting at least one of the functions of lighting, gas concentration detection, dust concentration detection, communication, and positioning;
[0088] The mine communication network is used to realize information transmission between the communication systems of the mine intelligent wearable protective equipment.
[0089] Figure 1The present invention shows a preferred but non-restrictive communication architecture of the communication system of the intelligent wearable protective equipment for mining. The control platform of the intelligent wearable system for mining performs two-way communication with the intrinsically safe mobile phone terminal for mining, the intrinsically safe mining lamp for mining and the intelligent dust mask for mining via the mining communication network; the intrinsically safe intelligent wearable wristband device for mining performs two-way communication with the intrinsically safe mobile phone terminal for mining, the intrinsically safe mining lamp for mining and the intelligent dust mask for mining via the mining communication network; wherein, the intelligent dust mask for mining adjusts the fan speed based on the monitoring data of the intrinsically safe intelligent wearable wristband device for mining.
[0090] Figure 2 Another preferred but non-restrictive communication architecture of the communication system of intelligent wearable protective equipment for mining of the present invention is shown. The control platform of the intelligent wearable system for mining carries out two-way communication with the intrinsically safe mobile phone terminal for mining, the intrinsically safe mining lamp for mining and the intelligent dust mask for mining via the mining communication network; the intrinsically safe intelligent wearable wristband device for mining carries out two-way communication with the intrinsically safe mobile phone terminal for mining and the intrinsically safe mining lamp for mining via the mining communication network; the intelligent dust mask for mining carries out two-way communication with the intrinsically safe mining lamp for mining via the mining communication network; wherein, Figure 1 The difference in the communication architecture shown is that the smart dust mask for mining adjusts the fan speed based on the data information of the intrinsically safe mining lamp for mining. Therefore, the smart dust mask for mining can be changed from communicating with the intrinsically safe smart wearable wristband device for mining to communicating with the intrinsically safe mining lamp for mining in two directions.
[0091] Figure 3 The present invention shows another preferred but non-restrictive communication architecture of the communication system of intelligent wearable protective equipment for mines. The control platform of the intelligent wearable system for mines communicates with the intrinsically safe mobile phone terminal, the intrinsically safe mining lamp and the intelligent dust mask for mines via the mine communication network; the intrinsically safe intelligent wearable wristband device for mines communicates with the intrinsically safe mobile phone terminal and the intrinsically safe mining lamp via the mine communication network; wherein, Figure 1 、 Figure 2 The difference in the communication architecture shown is that the smart dust mask for mining only communicates bidirectionally with the control platform of the smart wearable system for mining, and adjusts the fan speed directly according to its own dust sensor. It does not need to rely on the data information of the intrinsically safe mining lamp or the intrinsically safe smart wearable wristband for mining, or receive control information from the control platform of the smart wearable system for mining.
[0092] It is worth noting that Figures 1 to 3It is only an optimal but non-restrictive communication architecture for implementing fan speed adjustment of the intelligent wearable protective equipment communication system for mines and intelligent dust masks for mines of the present invention. In engineering practice, it can be set to carry out two-way communication between any two modules via the mine communication network. The intelligent dust masks for mines can integrate or adaptively select the data information provided by the intelligent wearable system control platform for mines, the intrinsically safe mobile phone terminal for mines, the intrinsically safe mining lamp for mines, and the intrinsically safe intelligent wearable wristband device for mines to adjust the fan speed and protect the health of mine workers.
[0093] Embodiment 2 of the present invention provides a communication system for intelligent wearable protective equipment for mining, including: an intelligent wearable system control platform for mining, an intrinsically safe mobile phone terminal for mining, an intrinsically safe mining lamp for mining, an intrinsically safe intelligent wearable wristband device for mining, an intelligent dust mask for mining and a communication network for mining. The parts that are the same as those in Embodiment 1 are not repeated here.
[0094] In Example 2, the intrinsically safe mining lamp further includes: a lighting device, a gas concentration detection sensor, a dust concentration detection sensor, a communication device, and a positioning device, wherein the gas detected by the gas concentration detection sensor is at least one of methane, oxygen, and carbon monoxide. The intrinsically safe mining lamp transmits at least one of the detected gas concentration data of methane, oxygen, and carbon monoxide, dust concentration data, and location information to a mining smart wearable system control platform or a mining smart dust mask via a mining communication network.
[0095] Embodiment 3 of the present invention provides a communication system for intelligent wearable protective equipment for mining, including: an intelligent wearable system control platform for mining, an intrinsically safe mobile phone terminal for mining, an intrinsically safe mining lamp for mining, an intrinsically safe intelligent wearable wristband device for mining, an intelligent dust mask for mining and a communication network. The parts that are the same as the previous embodiments will not be repeated.
[0096] In embodiment 3, the intelligent dust mask for mining includes: a fan device, a fan speed sensor, a dust filtering device, a dust concentration detection sensor, a communication device and a positioning device, such as Figure 4 The fan speed sensor is used to detect the speed of the fan device; the dust concentration detection sensor is used to detect the dust concentration in the environment; the communication device is used to send and receive communication data information and / or control information; and the positioning device is used to implement a positioning function.
[0097] Preferably but not restrictively, the mining smart dust mask sends at least one of the fan speed data information, dust concentration data information and location information to the mining smart wearable system control platform via the mining communication network, and can receive data information and / or control information from the mining smart wearable system control platform.
[0098] Preferably but not restrictively, the smart dust mask for mining receives gas concentration data information, dust concentration data information, location information and other data information from a mining intrinsically safe mobile phone terminal, a mining intrinsically safe mining lamp, and a mining intrinsically safe smart wearable wristband device via a mining communication network.
[0099] Further preferably, in order to reduce the complexity of the system, a dust concentration detection sensor may not be provided in the smart dust mask for mining. The dust concentration detection function supported by the smart dust mask for mining can indirectly detect the dust concentration through the fan speed measured by the fan speed sensor, and send the assessed dust concentration to the control platform of the smart wearable system for mining. In addition, a positioning device may not be provided in the smart dust mask for mining, and the positioning function may be achieved through other equipment in the system, such as a smart wearable wristband device for mining, a mobile phone terminal for mining, and a mining lamp for mining.
[0100] For example, the fan speed sensor can be used to indirectly detect dust concentration by determining a correspondence between fan speed ranges and dust concentrations. For example, speed range 1 corresponds to dust concentration range 1, and speed range 2 corresponds to dust concentration range 2. The speed in speed range 2 is greater than in speed range 1, and the dust concentration in dust concentration range 2 is greater than dust concentration 1.
[0101] Embodiment 4 of the present invention provides a communication system for intelligent wearable protective equipment for mining, including: an intelligent wearable system control platform for mining, an intrinsically safe mobile phone terminal for mining, an intrinsically safe mining lamp for mining, an intrinsically safe intelligent wearable wristband device for mining, an intelligent dust mask for mining and a communication network for mining. The parts that are the same as the previous embodiments will not be repeated.
[0102] In Example 4, the intelligent dust mask for mining includes: a fan device, which automatically adjusts the fan speed of the intelligent dust mask for mining according to the position information, specifically including:
[0103] Get location information;
[0104] Determine coal mine working face information based on the acquired location information;
[0105] The fan speed is determined based on a predefined correspondence between the coal mine working face information and the fan speed.
[0106] Preferably, but not restrictively, the location information is the location information sent by any module of the mining smart wearable system control platform, the mining intrinsically safe mobile phone terminal, the mining intrinsically safe mining lamp or the mining intrinsically safe smart wearable wristband device, or the location information obtained by the positioning device of the mining smart dust mask itself.
[0107] Further preferably, but not limiting, the coal mine working face information obtained is used to determine which coal mine working face is located. Based on different production uses and functions, coal mine working faces include shafts, chambers, main transport tunnels, auxiliary transport tunnels, fully mechanized mining working faces, and excavation working faces.
[0108] Further preferably but not restrictively, the communication system of the intelligent wearable protective equipment for mining also includes: a mapping table / correspondence between different geographical areas / working areas / working faces in the coal mine and the fan speed. The mapping table can be stored in the control platform of the intelligent wearable system for mining, and the fan speed control information is generated according to the location data information, and sent to the intelligent dust mask for mining to implement fan speed control. It can also be stored locally in the intelligent dust mask for mining, and the fan speed control information is directly generated locally to implement fan speed control.
[0109] Exemplarily, the intrinsically safe smart wearable wristband device for mining is a smart bracelet for mining. According to the positioning function of the smart bracelet for mining, it is determined that the coal mine working face where the staff is currently located is an area with a higher dust concentration, such as but not limited to a tunneling working face, and the location information, that is, the coal mine working face is a tunneling working face, is sent to the smart dust mask for mining through a mining communication network, such as but not limited to a mining 5G network. The smart dust mask for mining adjusts the fan speed to the fan speed corresponding to the predefined area with a higher dust concentration according to the coal mine working face information, or increases the current fan speed to a higher gear, such as but not limited to increasing it by 1 gear.
[0110] For further example, a predefined correspondence between coal mine working face information and fan speed is determined to form a mapping table, as shown in the following table. This mapping table is then stored on the mine smart wearable system control platform or the mine smart dust mask. Fan speeds gradually increase from gears 1 to 3. Shafts, chambers, and auxiliary transport tunnels are neither production sites nor coal transportation sites, with low dust concentrations corresponding to the lowest fan speed gear. Main transport tunnels are coal transportation sites with medium dust concentrations corresponding to medium fan speed gears. Fully mechanized mining faces and tunneling faces are coal production sites with high dust concentrations corresponding to the highest wind speed gear.
[0111] Table 1 Mapping table between coal mine working face and fan speed
[0112] Coal mine working face Fan speed of intelligent dust mask for mining shaft 1st gear Chamber 1st gear Main transport lane 2nd gear Fuyun Lane 1st gear Comprehensive mining working face 3rd gear Excavation working face 3rd gear
[0113] Further illustratively, there are two ways to determine the fan speed according to the predefined correspondence between the coal mine working face information and the fan speed.
[0114] Working mode 1: Determine the gear position;
[0115] Working mode 2: Determine the gear position and adjust the speed within the gear position.
[0116] In Mode 1, the gear position is determined based on the coal mine working face, as previously described. Each gear position corresponds to a fixed fan speed. For example, gear 1 corresponds to a fan speed of 100 rpm, gear 2 to 200 rpm, and gear 3 to 300 rpm.
[0117] In working mode 2, each gear corresponds to a speed range. For example, the fan speed corresponding to gear 1 is 100-200 rpm, the fan speed corresponding to gear 2 is 201-300 rpm, and the fan speed corresponding to gear 3 is 301-400 rpm. The speed can also be adjusted within a gear, for example, the speed can be adjusted from 100 rpm to 200 rpm in gear 1.
[0118] Embodiment 5 of the present invention provides a communication system for intelligent wearable protective equipment for mining, including: an intelligent wearable system control platform for mining, an intrinsically safe mobile phone terminal for mining, an intrinsically safe mining lamp for mining, an intrinsically safe intelligent wearable wristband device for mining, an intelligent dust mask for mining and a communication network for mining. The parts that are the same as the previous embodiments will not be repeated.
[0119] In Example 5, the smart dust mask for mining obtains the health parameter information of mine personnel collected by the intrinsically safe smart wearable wristband device for mining through the mining communication network, and determines the first behavior of fan speed adjustment based on this information. The health parameter information of mine personnel includes: blood oxygen, heart rate, blood pressure, respiratory frequency, and breathing quality. At least one of them.
[0120] Preferably, but not limitatively, determining the first action of adjusting the fan speed according to the predefined correspondence between the mine personnel health parameter and the fan speed includes:
[0121] Determine the interval range of the value of the mine personnel health parameter information;
[0122] Determine the fan speed corresponding to the interval range according to the predefined corresponding relationship;
[0123] Adjust the fan speed to a fan speed within the specified range.
[0124] The first behavior of determining the fan speed adjustment based on the health parameter information of the mine personnel collected by the mine intrinsically safe smart wearable wristband device includes both the mine smart dust mask and the mine intrinsically safe smart wearable wristband device communicating bidirectionally, the mine intrinsically safe smart wearable wristband device collecting the health parameter information of the mine personnel and sending it to the mine smart dust mask via the mine communication network, and the mine smart dust mask determining the first behavior of adjusting the fan speed based on the acquired health parameter information of the mine personnel; and also includes the mine intrinsically safe smart wearable wristband device uploading the health parameter information of the mine personnel to the mine smart wearable system control platform, and then the mine smart wearable system control platform communicating with the mine smart dust mask to determine the first behavior of adjusting the fan speed. The first behavior includes but is not limited to at least one of determining the fan speed gear, adjusting the fan speed gear upward, adjusting the fan speed gear downward, maintaining the fan speed gear, adjusting the fan speed upward, adjusting the fan speed downward, and maintaining the fan speed.
[0125] . Further preferably but not restrictively, the communication system of the intelligent wearable protective equipment for mining further includes: a predefined correspondence / mapping table between the interval range of the health parameters of the mine personnel, such as blood oxygen, heart rate, blood pressure, respiratory frequency, respiratory quality, etc. and the fan speed. The mapping table can be stored in the control platform of the intelligent wearable system for mining, and the fan speed control information is generated according to the health parameter information interval data information, and sent to the intelligent dust mask for mining to implement fan speed control. It can also be stored locally in the intelligent dust mask for mining, and the fan speed control information is directly generated locally to implement fan speed control.
[0126] It can be understood that in the former, the mine-used intrinsically safe smart wearable wristband device sends the health parameter information of the mine personnel to the mine-used smart wearable system control platform, and the mine-used smart wearable system control platform calls the mapping table between the range of blood oxygen, heart rate, blood pressure, respiratory frequency, respiratory quality, etc. and the fan speed, generates the fan speed control information and sends it to the mine-used smart dust mask. The latter is sent directly to the mine-used smart dust mask by the mine-used intrinsically safe smart wearable wristband device, and the mine-used smart dust mask directly calls the mapping table between the range of blood oxygen, heart rate, blood pressure, respiratory frequency, respiratory quality, etc. and the fan speed to generate the fan speed control information.
[0127] For example, the intrinsically safe smart wearable wristband device for mining is a smart wristband. Using heart rate as an example, the same applies to other health parameters of mine personnel. Using the heart rate measurement function of the smart wristband, the wearer's current heart rate is acquired and transmitted to the smart dust mask using direct communication or 5G technology. The mask then determines the fan speed based on the current heart rate range. An example is shown in the table below, where the fan speed increases gradually from gears 1 to 3. For example, if the measured heart rate is 110 beats per minute, which falls within the range [100, 120], the fan speed is adjusted to the gear corresponding to this range, i.e., gear 2. The determination of the heart rate range here needs to take into account the coal mine working environment and reflect the differences from ordinary working environments. For example, in ordinary environments, a normal heart rate is considered to be 60-90 beats per minute. However, given the limited space and high work intensity of underground work, a normal heart rate can be considered to be 60-100 beats per minute, i.e., the first range is "less than 100."
[0128] Table 2 Mapping table between heart rate and fan speed
[0129] Heart rate (beats / min) Fan speed of intelligent dust mask for mining Less than 100 1st gear [100,120] 2nd gear Greater than 120 3rd gear
[0130] Further illustratively, adjusting the fan speed to the fan speed corresponding to the interval range includes working mode 1 of determining the gear position and working mode 2 of determining the gear position and adjusting the speed within the gear position as described in Example 4.
[0131] Further illustratively, the fan speed is determined according to the predefined correspondence between the mine personnel health parameter and the fan speed, and method 3 may also be used, including:
[0132] determining a value of a health parameter of the mine personnel;
[0133] Determining the fan speed corresponding to the value of the mine personnel health parameter according to a predefined correspondence between the value of the mine personnel health parameter and the fan speed;
[0134] The fan speed is adjusted to the value corresponding to the mine personnel parameter.
[0135] The corresponding fan speed can be directly determined based on the health parameter information of the mine personnel, and the speed of the mining smart dust mask does not need to be divided into different gears. For example, but not limited to, Figure 5 Corresponding relationship diagram between center rate and rotation speed.
[0136] Embodiment 6 of the present invention provides a communication system for intelligent wearable protective equipment for mining, including: an intelligent wearable system control platform for mining, an intrinsically safe mobile phone terminal for mining, an intrinsically safe mining lamp for mining, an intrinsically safe intelligent wearable wristband device for mining, an intelligent dust mask for mining and a mining communication network. The intelligent dust mask for mining automatically adjusts the fan speed based on the health parameter information of the mine personnel obtained by the intrinsically safe intelligent wearable wristband device for mining. The health parameter information of the mine personnel includes: at least one of blood oxygen, heart rate, blood pressure, respiratory frequency, and respiratory quality. The parts that are the same as the previous embodiments will not be repeated here.
[0137] Unlike Example 5, which automatically adjusts the fan speed based on the miner's health parameter information, Example 6 provides another control mode to improve the dynamic response performance. This mode generates fan speed control information based on the fluctuations in the miner's health parameter information within a certain time range. Specifically, the fan speed control information is determined based on the fluctuations in at least one of blood oxygen, heart rate, blood pressure, respiratory rate, and respiratory quality within a certain time range.
[0138] Preferably, but not limitatively, determining the control information for fan speed includes: determining an upward adjustment of the fan speed and determining a downward adjustment of the fan speed. Specifically, if at least one of a downward fluctuation value of blood oxygen concentration, an upward fluctuation value of heart rate, an upward fluctuation value of blood pressure, an upward fluctuation value of respiratory rate, or a downward fluctuation value of respiratory quality is greater than or equal to a first threshold corresponding to the parameter, the upward adjustment of the fan speed is determined; if the upward fluctuation value of blood oxygen concentration, the downward fluctuation value of heart rate, the downward fluctuation value of blood pressure, the downward fluctuation value of respiratory rate, or the upward fluctuation value of respiratory quality is greater than or equal to the first threshold corresponding to the parameter, the downward adjustment of the fan speed is determined.
[0139] The upward adjustment behavior includes: adjusting the speed upward, adjusting the speed upward by one order of magnitude, or determining the order of the speed upward adjustment based on the fluctuation range; correspondingly, the downward adjustment behavior includes: adjusting the speed downward, adjusting the speed downward by one order of magnitude, or determining the order of the speed downward adjustment based on the fluctuation range.
[0140] Further preferably but not limitatively, the adjustment level is calculated using the following formula:
[0141]
[0142] If the fan speed exceeds the maximum speed / level based on the adjustment level, the maximum speed / level is used; if the fan speed is lower than the minimum speed / level based on the adjustment level, the minimum speed is used.
[0143] Exemplarily, the intrinsically safe smart wearable wristband device for mining is a smart bracelet for mining, and taking heart rate as an example, the same applies to the health parameter information of other mine personnel. According to the heart rate test function of the smart bracelet for mining, the current heart rate fluctuation range of the wearer is obtained, which increases by 30 times per minute (i.e., the first time interval), and the heart rate fluctuation information is sent to the smart dust mask through direct communication technology, Bluetooth or mining 5G communication technology. The smart dust mask for mining determines the adjustment behavior of the fan speed based on the fluctuation value. Specifically: the unit fluctuation granularity is 15 times / minute, that is, the fan speed is adjusted up or down by 1 order of magnitude for every 15 fluctuations. Because the measured heart rate increases by 30 times per minute, the fan speed is adjusted up by 30 / 15=2 orders of magnitude.
[0144] Embodiment 7 of the present invention provides a communication system for intelligent wearable protective equipment for mining, including: an intelligent wearable system control platform for mining, an intrinsically safe mobile phone terminal for mining, an intrinsically safe mining lamp for mining, an intrinsically safe intelligent wearable wristband device for mining, an intelligent dust mask for mining and a mining communication network. The intelligent dust mask for mining automatically adjusts the fan speed based on the health parameter information of the mine personnel obtained by the intrinsically safe intelligent wearable wristband device for mining. The health parameter information of the mine personnel includes: at least one of blood oxygen, heart rate, blood pressure, respiratory frequency, and respiratory quality. The parts that are the same as the previous embodiments are not repeated here.
[0145] In Example 7, unlike Example 5, which automatically adjusts the fan speed based on the miner's health parameter information, Example 7 provides another control mode that simplifies the control algorithm and generates fan speed control information based on the relationship between the miner's health parameter information and a first threshold. Specifically, the fan speed adjustment is determined based on the relationship between the first threshold and at least one of blood oxygen, heart rate, blood pressure, respiratory rate, and respiratory quality.
[0146] Preferably, but not limited to, if at least one of blood oxygen, heart rate, blood pressure, respiratory rate, and respiratory quality is greater than or equal to a first threshold, the fan speed is adjusted upward by one order of magnitude; if it is less than the first threshold, the fan speed is adjusted downward by one order of magnitude. Alternatively, if it is less than the first threshold, the fan speed is maintained at the current level.
[0147] Further preferably but not restrictively, if the fan speed is at the maximum value / maximum gear, the maximum value / maximum gear is maintained; if the fan speed is at the minimum value / minimum gear, the minimum value / minimum gear is maintained; the above-mentioned threshold value or threshold value can be determined according to the coal mine working environment in the manner of Example 5, for example, the threshold value corresponding to the heart rate is 100 times / minute in the excavation working face and 90 times / minute in the auxiliary transport tunnel.
[0148] For example, the intrinsically safe smart wearable wristband device for mining is a smart bracelet for mining, and taking heart rate as an example, the same applies to other health parameter information of mine personnel. According to the heart rate test function of the smart bracelet for mining, the first threshold value of the heart rate is 100 beats / minute, that is, 100 beats / minute is considered to be the upper limit of the normal heart rate of underground workers. The measured heart rate value is 110 beats / minute, because it is greater than the first threshold value, so the fan speed is adjusted upward by one order of magnitude. After adjustment, the heart rate is 105 beats / minute, which is still greater than the first threshold value, so the fan speed is adjusted upward by another order of magnitude. After adjustment, the heart rate drops to 90 beats / minute, and the fan speed is adjusted downward by another order of magnitude. If the heart rate is still lower than the first threshold value, the fan speed continues to decrease until the fan speed reaches the minimum value.
[0149] Embodiment 8 of the present invention provides a communication system for intelligent wearable protective equipment for mining, including: an intelligent wearable system control platform for mining, an intrinsically safe mobile phone terminal for mining, an intrinsically safe mining lamp for mining, an intrinsically safe intelligent wearable wristband device for mining, an intelligent dust mask for mining and a communication network for mining. The parts that are the same as the previous embodiments will not be repeated here.
[0150] In Example 8, the intelligent dust mask for mining automatically adjusts the fan speed based on the obtained dust concentration data information. The dust concentration data information can be the dust concentration detected by the dust concentration detection sensor built into the intelligent dust mask for mining, or it can be the dust concentration sent to the intelligent dust mask for mining via the mining communication network from at least one of the intelligent wearable system control platform for mining, the intrinsically safe mobile phone terminal for mining, or the intrinsically safe mining lamp for mining. In addition, the dust concentration information can also be the dust concentration indirectly obtained based on the fan speed measured by the wind speed sensor in the intelligent dust mask for mining. More specifically, the data information locally obtained by the intelligent dust mask for mining can be either the data information directly measured by the built-in dust concentration detection sensor, or the data information obtained by evaluating the dust concentration by the speed of the fan speed sensor in the absence of a built-in dust concentration detection sensor. The dust concentration data information obtained locally by the non-mining smart dust mask can be sent directly to the mining smart dust mask by the mining intrinsically safe mining lamp through the mining network communication, or it can be sent to the mining smart wearable system control platform first, and the mining smart wearable system control platform and the mining smart dust mask can communicate data information and / or control information in a two-way manner.
[0151] Preferably but not restrictively, determining the fan speed based on a predefined correspondence between dust concentration information and fan speed includes determining a correspondence / mapping table between the dust concentration range and the fan speed. The mapping table can be stored in the mining smart wearable system control platform, generating fan speed control information based on the dust concentration data information, and sending it to the mining smart dust mask to implement fan speed control, or it can be stored locally in the mining smart dust mask, where the fan speed control information is directly generated locally to implement fan speed control.
[0152] Exemplarily, the correspondence between the dust concentration interval range and the fan speed is determined. As shown in the following table, the dust concentration gradually increases from interval 1 to interval 3, and the fan speed gradually increases from level 1 to level 3.
[0153] Table 3 Mapping table between dust concentration and fan speed
[0154] Dust concentration Fan speed of intelligent dust mask for mining Interval 1 1st gear Interval 2 2nd gear Interval 3 3rd gear
[0155] Embodiment 9 of the present invention provides a communication system for intelligent wearable protective equipment for mining, including: an intelligent wearable system control platform for mining, an intrinsically safe mobile phone terminal for mining, an intrinsically safe mining lamp for mining, an intrinsically safe intelligent wearable wristband device for mining, an intelligent dust mask for mining and a communication network. The parts that are the same as the previous embodiments will not be repeated.
[0156] In Example 9, multiple fan speed adjustment methods in Examples 4, 5, 6, 7, and 8 can be integrated. The fan speed of the smart dust mask for mining can be adjusted based on the integration of at least two of the location information, mine personnel health parameter information, and dust concentration data information, or the fan speed of the smart dust mask for mining can be adjusted based on the integration of at least two of the mine personnel health parameter information interval, fluctuation, and threshold.
[0157] Preferably but not restrictively, the fan speed is adjusted by integrating the maximum speed obtained as the final control information to control the fan speed of the mining intelligent dust mask.
[0158] Exemplarily, the intrinsically safe smart wearable wristband device for mining is a smart bracelet for mining, which jointly determines the fan speed based on at least two of the dust concentration in the current environment detected by the dust monitoring sensor of the smart dust mask for mining, the health parameter information of the mine personnel monitored by the smart bracelet for mining, and the location information.
[0159] For example, after lowering the fan speed based on the dust concentration detection results, the mining smart watch detects an increase in breathing frequency and heart rate, and the fan speed needs to be increased again.
[0160] Embodiment 10 of the present invention provides a communication system for intelligent wearable protective equipment for mining, including: an intelligent wearable system control platform for mining, an intrinsically safe mobile phone terminal for mining, an intrinsically safe mining lamp for mining, an intrinsically safe intelligent wearable wristband device for mining, an intelligent dust mask for mining and a communication network for mining. The parts that are the same as the previous embodiments will not be repeated here.
[0161] In Example 10, the communication network uses at least one of Bluetooth, WiFi, 5G, 4G, Sidelink (direct communication), and Starflash. Preferably, but not restrictively, the communication network uses Starflash wireless short-range communication technology, and the operating mode includes an authorized frequency band operating mode or an unlicensed frequency band operating mode. The beneficial effects include at least: low power consumption, suitable for power-constrained devices such as smart dust masks for mining; Starflash is a short-range communication technology, suitable for space-constrained areas such as coal mines.
[0162] The communication network works by:
[0163] Patrol sending: periodic sending based on a predetermined period value;
[0164] Triggered sending: Send after receiving a request message.
[0165] More specifically, the traditional unlicensed frequency band operating mode is a shared spectrum among multiple communication technologies (including Bluetooth, WiFi, and Starflash). Devices need to perform channel access or LBT (Listen before talk) before sending messages. However, underground coal mines are closed environments, with a limited number of devices and a fixed deployment area. Spectrum allocation and control in unlicensed frequency bands can be performed for special areas underground in coal mines (such as fully mechanized mining faces or tunneling faces). Specifically, some resources (primary resources) in the unlicensed frequency band are reserved for mine-specific network communications (such as Starflash), thereby ensuring timely warnings and low latency and high reliability of communications.
[0166] The specific allocation method may be: reserving part of the frequency domain resources of the unlicensed frequency band as the first resource (such as Figure 6 Alternatively, part of the time domain resources of the unlicensed frequency band are reserved as the first resource (as shown in Figure 7 As shown), or, part of the time-frequency resources in the unlicensed frequency band are reserved as the first resources.
[0167] The granularity in the time domain can be symbol, time slot, subframe or frame.
[0168] The granularity in the frequency domain can be subcarrier, PRB (physical resource block), subchannel or resource pool.
[0169] Exemplarily, a first resource is reserved for performing a first operation, the first resource is a time domain resource reserved with a first period value, the first period value is half of the inspection period value of the monitoring system, and the first operation includes but is not limited to sending emergency alarm information.
[0170] Embodiment 11 of the present invention provides a method based on a communication system for intelligent wearable protective equipment for mining. Based on the communication system for intelligent wearable protective equipment for mining described in the above embodiment, the communication method for intelligent wearable protective equipment for mining includes:
[0171] Information transmission is achieved between the mining smart dust mask and at least one of the following items through the mining communication network: a mining smart wearable system control platform, a mining intrinsically safe mobile phone terminal, a mining intrinsically safe mining lamp, a mining intrinsically safe smart wearable wristband device and a mining communication network; wherein,
[0172] Intelligent dust masks for mining, used for at least one of dust filtration, dust concentration detection, fan speed adjustment, fan speed detection, communication and positioning;
[0173] Mine smart wearable system control platform, used to receive and analyze communication data information and send communication scheduling information;
[0174] Mine-use intrinsically safe smart wearable wristband device, used for collecting health parameters of mine personnel and sending and receiving communication data information;
[0175] Mine-use intrinsically safe mobile phone terminal, used to generate, send and receive communication data information;
[0176] Intrinsically safe mining lamps for use in mines, used for at least one of lighting, gas concentration detection, dust concentration detection, communication, and positioning;
[0177] The mine communication network is used to realize information transmission between the communication systems of the mine intelligent wearable protective equipment.
[0178] Embodiment 12 of the present invention provides an electronic device, including a processor and a memory, wherein the memory is used to store instructions;
[0179] The processor is used to execute the instructions to complete the communication method of intelligent wearable protective equipment for mining described in the second aspect of the present invention.
[0180] Embodiment 13 of the present invention provides a computer-readable storage medium, which stores instructions. When the instructions are executed, the communication method based on the intelligent wearable protective equipment for mining described in embodiment 11 of the present invention is executed.
[0181] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention rather than to limit it. Although the present invention has been described in detail with reference to the above embodiments, ordinary technicians in the field should understand that the specific implementation methods of the present invention can still be modified or replaced by equivalents. Any modification or equivalent replacement that does not depart from the spirit and scope of the present invention should be covered by the scope of protection of the claims of the present invention.
Claims
1. A communication system for intelligent wearable protective equipment for mining, characterized by: The system includes intelligent dust masks for mining, intelligent wearable system control platform for mining, intrinsically safe mobile phone terminals for mining, intrinsically safe mining lamps for mining, intrinsically safe intelligent wearable wristband devices for mining and mining communication networks; among them, Intelligent dust masks for mining, used for dust filtration, dust concentration detection, fan speed adjustment, fan speed detection and communication; Intrinsically safe mining lamps for lighting, gas concentration detection, communication and positioning; Mine smart wearable system control platform, used to receive and analyze communication data information and send communication scheduling information; Mine-use intrinsically safe smart wearable wristband device, used for collecting health parameters of mine personnel and sending and receiving communication data information; Mine-use intrinsically safe mobile phone terminal, used to generate, send and receive communication data information; A mine communication network, used to realize information transmission between the communication systems of the mine intelligent wearable protective equipment; The intelligent dust mask for mining is used for adjusting the fan speed, including automatically adjusting the fan speed according to position information.
2. A communication system for intelligent wearable protective equipment for mining according to claim 1, characterized in that: The intelligent dust mask for mining includes: a fan device, a fan speed sensor, a dust filtering device, a dust concentration detection sensor, and a communication device; wherein, The fan speed sensor is used to detect the speed of the fan device; the dust concentration detection sensor is used to detect the dust concentration in the environment; and the communication device is used to send and receive communication data and / or control information.
3. The communication system for intelligent wearable protective equipment for mining according to claim 1, characterized in that: The intrinsically safe mining lamp for mining includes: a lighting device, a gas concentration detection sensor, a communication device and a positioning device; Among them, the gas concentration detection sensor is used to detect the concentration of gas in the environment; the communication device is used to send and receive communication data and / or control information; and the positioning device is used to realize the positioning function.
4. A communication system for intelligent wearable protective equipment for mining according to claim 1 or 2, characterized in that: The mining intelligent dust mask is used for dust concentration detection and includes: The intelligent dust mask for mining directly detects the dust concentration through a dust concentration detection sensor.
5. A communication system for intelligent wearable protective equipment for mining according to claim 1 or 2, characterized in that: The intelligent dust mask for mining is used for adjusting the fan speed and further includes: The intelligent dust mask for mining automatically adjusts the fan speed according to at least one of the health parameter information of mine personnel and the dust concentration information.
6. A communication system for intelligent wearable protective equipment for mining according to claim 5, characterized in that: The intelligent dust mask for mining automatically adjusts the fan speed according to the position information, including: Get location information; Determine coal mine working face information based on the acquired location information; The fan speed is determined based on a predefined correspondence between the coal mine working face information and the fan speed.
7. A communication system for intelligent wearable protective equipment for mining according to claim 6, characterized in that: The obtaining of location information includes: The location information is the location information sent by the intrinsically safe mining lamp for mining through the mining communication network.
8. The communication system for intelligent wearable protective equipment for mining according to claim 5, characterized in that: The intelligent dust mask for mining automatically adjusts the fan speed according to the health parameter information of the mine personnel, including: Obtaining health parameter information of mine personnel collected by the mine intrinsically safe smart wearable wristband device; A first action of adjusting the fan speed is determined according to the mine personnel health parameter information.
9. A communication system for intelligent wearable protective equipment for mining according to claim 8, characterized in that: The health parameters of the mine personnel include at least one of blood oxygen, heart rate, blood pressure, respiratory rate, and respiratory quality.
10. A communication system for intelligent wearable protective equipment for mining according to claim 8 or 9, characterized in that: The first action of determining the fan speed adjustment according to the mine personnel health parameter information includes: Determining the fan speed according to a predefined correspondence between the mine personnel health parameter and the fan speed; or, Determine the fan speed according to the fluctuation value of the mine personnel health parameter within the first time interval; or, The fan speed is determined according to a relationship between the mine personnel health parameter and a first threshold value.
11. A communication system for intelligent wearable protective equipment for mining according to claim 10, characterized in that: The determining the fan speed according to a predefined correspondence between the mine personnel health parameter and the fan speed includes: Determining the interval range within which the value of the mine personnel health parameter lies; Determine the fan speed corresponding to the interval range according to the predefined corresponding relationship; Adjust the fan speed to a fan speed within the specified range.
12. The communication system for intelligent wearable protective equipment for mining according to claim 10, characterized in that: The determining the fan speed according to the fluctuation value of the mine personnel health parameter within the first time interval includes: Obtaining a fluctuation value of the mine personnel health parameter within the first time interval; determining a fan speed adjustment range according to the fluctuation value and the unit fluctuation granularity; Adjust the fan speed according to the fan speed adjustment range.
13. The communication system for intelligent wearable protective equipment for mining according to claim 10, characterized in that: Determining the fan speed according to the relationship between the mine personnel health parameter and the first threshold value includes: Obtaining the value of the mine personnel health parameter; A first action is determined according to a relationship between the value of the health parameter and a first threshold value.
14. A communication system for intelligent wearable protective equipment for mining according to claim 13, characterized in that: Determining the first behavior according to the relationship between the value of the health parameter and the first threshold value includes: If the value of the health parameter is greater than or equal to a first threshold value, the fan speed is adjusted upward by one order of magnitude; If the value of the health parameter is less than the first threshold, the fan speed is adjusted downward by one order of magnitude.
15. The communication system for intelligent wearable protective equipment for mining according to claim 5, characterized in that: The intelligent dust mask for mining automatically adjusts the fan speed according to dust concentration information, including: Obtain dust concentration information; The fan speed is determined based on a predefined correspondence between the dust concentration information and the fan speed.
16. A communication system for intelligent wearable protective equipment for mining according to claim 15, characterized in that: The obtaining of dust concentration information includes: The dust concentration information is the dust concentration detected by the dust concentration detection sensor in the mining intelligent dust mask.
17. The communication system for intelligent wearable protective equipment for mining according to claim 1, characterized in that: The mine communication network adopts at least one communication technology among Bluetooth, WiFi, 5G, 4G, Sidelink, and Star Flash.
18. A communication system for intelligent wearable protective equipment for mining according to claim 17, characterized in that: The communication mode in the system adopts a polling-type periodic transmission mode or a trigger-based aperiodic transmission mode.
19. A communication system for intelligent wearable protective equipment for mining according to claim 17 or 18, characterized in that: A first resource is reserved for performing a first operation; wherein, The first resource is a time domain resource reserved with a first period value; The first operation is sending emergency warning information.
20. A communication method for intelligent wearable protective equipment for mining, applied to a communication system for intelligent wearable protective equipment for mining according to any one of claims 1 to 19, characterized in that: The method includes: Information transmission is achieved between mining smart dust masks and the following devices through the mining communication network: mining smart wearable system control platform, mining intrinsically safe mobile phone terminal, mining intrinsically safe mining lamp and mining intrinsically safe smart wearable wristband device; among them, Intelligent dust masks for mining, used for dust filtration, dust concentration detection, fan speed adjustment, fan speed detection and communication; Mine smart wearable system control platform, used to receive and analyze communication data information and send communication scheduling information; Mine-use intrinsically safe smart wearable wristband device, used for collecting health parameters of mine personnel and sending and receiving communication data information; Mine-use intrinsically safe mobile phone terminal, used to generate, send and receive communication data information; Intrinsically safe mining lamps for lighting, gas concentration detection, communication and positioning; The mine communication network is used to realize information transmission between the communication systems of the mine intelligent wearable protective equipment.
21. An electronic device, characterized in that: It includes a processor and a memory, the memory is used to store computer program instructions, and the processor is used to execute the computer program instructions to complete the communication method of the intelligent wearable protective equipment for mining as described in claim 20.
22. A computer-readable storage medium, characterized in that: The computer-readable storage medium stores computer program instructions, and when the computer program instructions are executed by the processor, the communication method for intelligent wearable protective equipment for mining according to claim 20 is executed.
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