Anti-violation signal processing system and method based on anti-violation network coordinator
By improving the anti-violation network coordinator system, utilizing second-hand smartphones and signal conversion interface circuits, combined with environmental signal sensors and an anti-violation cloud system, the problem of the inability to achieve multiple network connections and signal conversion and acquisition in existing technologies has been solved. This enables the effective identification and processing of underground violations, promotes the intelligent development of underground communication, and achieves energy conservation and emission reduction.
Patent Information
- Application Number
- CN202410565006.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-09
- Publication Date
- 2025-11-11
AI Technical Summary
Existing anti-violation network coordinators cannot achieve multiple network connections, signal conversion and acquisition, and cannot effectively identify and handle underground violations.
Design a signal processing system based on an anti-violation network coordinator. Utilize second-hand smartphones as terminal devices, and combine them with signal conversion interface circuits, environmental signal sensors, and an anti-violation cloud system to achieve multiple network connections and signal conversion. Identify and process underground violations through 5G/6G communication.
It enables the connection and signal conversion of multiple networks, effectively identifies and handles illegal activities underground, promotes the intelligent development of underground communication, and achieves energy conservation and emission reduction.
Smart Images

Figure CN120935296A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of coal mine signal processing technology, and in particular to an anti-violation signal processing system and method based on an anti-violation network coordinator. Background Technology
[0002] Currently, the large number of discarded smartphones is causing environmental pollution. How to effectively utilize second-hand smartphones to achieve energy conservation and emission reduction is a major technical issue.
[0003] 4G and 5G mobile phones are already in use underground. However, there is no anti-violation network coordinator that can connect to multiple networks such as cables, optical cables, WiFi 6, Bluetooth, 4G, 5G and the future 6G, and can also convert violation operation signals, collect electrical status signals, environmental signals and operation instructions written in various protocols. Summary of the Invention
[0004] The purpose of this invention is to provide an anti-violation signal processing system and method based on an anti-violation network coordinator, which solves the technical problem that existing anti-violation network coordinators cannot realize various network connections, signal conversion and acquisition.
[0005] According to a first aspect of the present invention, an anti-violation signal processing system based on an anti-violation network coordinator is provided, comprising: a signal conversion interface circuit disposed within an explosion-proof enclosure and connected to multiple different downhole anti-violation technology products, used to convert the current working status information of each downhole anti-violation technology product into current working status information receivable by a terminal device; a terminal device disposed within an explosion-proof enclosure and connected to the signal conversion interface circuit, used to process the current working status information of each downhole anti-violation technology product to obtain processed current working status information of each downhole anti-violation technology product; and an anti-violation cloud system disposed above ground, used to identify whether there is a violation in the processed current working status information of each downhole anti-violation technology product transmitted by the terminal device via 5G / 6G communication, and, when a violation is identified, to perform anti-violation processing on the downhole anti-violation technology product with the violation via 5G / 6G communication.
[0006] Preferably, it further includes: a plurality of different environmental signal sensors disposed within the explosion-proof housing and connected to the terminal device, specifically including: a first speaker and a first microphone installed within the explosion-proof housing and in the first hole on the left side of the transparent protective cover; a second speaker and a second microphone installed within the explosion-proof housing and in the second hole on the right side of the transparent protective cover; and a camera, a phototube, an acceleration probe, a gas probe, a temperature probe, a humidity probe, and a wind speed probe respectively installed within the explosion-proof housing and in multiple holes on the front side of the transparent protective cover.
[0007] Preferably, the explosion-proof housing has a transparent protective cover on its upper cover plate; the terminal device includes a touch-operable display screen and a device motherboard, and the display screen and the device motherboard are separate; or the terminal device includes a used mobile phone / 6G mobile phone; wherein, the display screen is fastened to the inside of the upper cover plate of the explosion-proof housing by a fixing strap and is located directly below the transparent protective cover; the device motherboard is located directly above the signal conversion interface circuit, and the device motherboard and the signal conversion interface circuit are connected via wired or wireless means; or the used mobile phone / 6G mobile phone is fastened to the inside of the upper cover plate of the explosion-proof housing by a fixing strap and is located directly below the transparent protective cover; the used mobile phone / 6G mobile phone is located directly above the signal conversion interface circuit, and the used mobile phone / 6G mobile phone and the signal conversion interface circuit are connected via wired or wireless means.
[0008] Preferably, the system further includes: a first lead wire device fixed to the left side of the explosion-proof enclosure for introducing a first input or output wire, wherein one end of the first input or output wire is connected to one end of the signal conversion interface circuit, and the other end is connected to the downhole anti-violation technology product and the downhole anti-violation communication system; and a second lead wire device fixed to the right side of the explosion-proof enclosure for introducing a second input or output wire, wherein one end of the second input or output wire is connected to the other end of the signal conversion interface circuit, and the other end is connected to the downhole anti-violation technology product and the downhole anti-violation communication system.
[0009] Preferably, the downhole anti-violation technology products include: an anti-violation cover opening sensor, an anti-violation backup protection test device, an electrical interlock anti-violation sensor, a gas over-limit interlock anti-violation sensor, a downhole grounding resistance test device, and a switch; the downhole anti-violation communication system includes: an anti-violation network coordinator, a communication substation, a communication cable, an anti-violation power supply, a signal converter, a power-off device, and explosion-proof equipment.
[0010] Preferably, the plurality of different environmental signal sensors are used to collect different environmental information and work information of personnel underground, and send the collected different environmental information and work information of personnel underground to a terminal device; the terminal device is further used to process the environmental information and work information to obtain processed environmental information and / or work information, and send the processed environmental information and / or work information to the anti-violation cloud system through 5G / 6G communication, so that the anti-violation cloud system can perform anti-violation processing.
[0011] Preferably, the terminal device is further configured to transmit the 5G / 6G wireless signal containing the ID of the underground anti-violation technology product and control instructions issued by the anti-violation cloud system to the corresponding underground anti-violation technology product via 5G / 6G communication, so that the underground anti-violation technology product performs control processing according to the control instructions.
[0012] Preferably, it also includes: a monitoring terminal wirelessly connected to the anti-violation cloud system, used to view the working status of the downhole anti-violation technology product or the downhole information collected by the environmental signal sensor.
[0013] According to a second aspect of the present invention, a method for processing anti-violation signals based on an anti-violation network coordinator is provided, comprising: a monitoring terminal using the current operating status of an underground anti-violation technology product and / or current underground information collected by each environmental signal sensor to generate a 5G / 6G wireless signal containing an underground anti-violation technology product ID and an anti-violation control command, and transmitting the 5G / 6G wireless signal to a terminal device via an anti-violation cloud system; the terminal device, based on the underground anti-violation technology product ID in the 5G / 6G wireless signal, transmitting the anti-violation control command in the 5G / 6G wireless signal to the corresponding underground anti-violation technology product via 5G / 6G communication, so that the underground anti-violation technology product performs operational processing according to the anti-violation control command.
[0014] According to a third aspect of the present invention, an anti-violation signal processing method based on an anti-violation network coordinator is provided, comprising: the terminal device transmitting touch operation information of a worker on a touch-operable display screen to an anti-violation cloud system via 5G / 6G communication; the anti-violation cloud system determining, based on the touch operation information, a 5G / 6G communication device with 5G / 6G communication capability and an anti-violation control command for performing anti-violation control, and transmitting the anti-violation control command to the 5G / 6G communication device.
[0015] The beneficial technical effect of this invention is that by effectively developing and utilizing second-hand mobile phones and mobile phone development board accessories, modifying the mobile phone program, and installing it in a new explosion-proof shell, an anti-illegal network coordinator is manufactured, realizing various network connections, signal conversion, and acquisition. Although 6G mobile phones are not yet on the market, they are expected to be available around 2030. At that time, purchasing a 6G mobile phone and referring to the method of this patent will allow the anti-illegal network coordinator to be upgraded and connected to a 6G network. Regardless of how communication develops in the future, as long as mobile phone communication is still used, this invention will benefit society by referring to the method of this patent.
[0016] The structure and working principle of the present invention will be described in detail below with reference to the accompanying drawings. Attached Figure Description
[0017] Figure 1 This is one of the schematic diagrams of the anti-violation network coordinator improved using second-hand smartphones according to the present invention;
[0018] Figure 2 This is the second schematic diagram of the anti-violation network coordinator improved using second-hand smartphones according to the present invention;
[0019] Figure 3 This is the third schematic diagram of the anti-violation network coordinator improved using second-hand smartphones according to the present invention;
[0020] Figure 4 This is the fourth schematic diagram of the anti-violation network coordinator improved using second-hand smartphones according to the present invention.
[0021] Figure 5 This is a schematic diagram of an anti-violation signal processing system based on an anti-violation network coordinator according to the present invention;
[0022] Figure 6 This is one of the flowcharts of an anti-violation signal processing method based on an anti-violation network coordinator according to the present invention;
[0023] Figure 7 This is the second flowchart of an anti-violation signal processing method based on an anti-violation network coordinator according to the present invention.
[0024] Explanation of reference numerals in the attached diagram: 1-Touch operation window; 3-Transparent protective cover; 4-First hole; 5-Fasting bolt; 7-Top cover plate; 9-Sealing gasket; 11-Outer shell; 13-First input or output wire; 15-First lead wire device; 16-Sensors such as speaker and microphone; 17-Signal conversion interface circuit; 18-Hole C; 19-Sensors such as camera and phototube; 20-Signal processing circuit such as mobile phone motherboard; 21-Second lead wire device; 22-Mobile phone display screen fixing strap; 23-Mobile phone display screen; 24-Microphone and speaker... Sensors such as acoustic devices; 25-Second hole; 26-Ground information processing center; 27-Anti-violation cloud system; 28-Mobile APP for electromechanical supervision personnel; 29-Underground 5G / 6G base station A; 31-Power supply switch; 33-Magnetic starter; 34-Underground 5G / 6G base station B; 35-Wi-Fi communication equipment; 37-Underground grounding resistance testing device capable of 4G and other wireless communications; 39-Wired anti-violation cover opening sensor; 41-Cable communication or fiber optic communication anti-violation backup protection test device; 43-Switch. Detailed Implementation
[0025] This invention is an anti-violation signal processing system based on an anti-violation network coordinator, comprising: a signal conversion interface circuit disposed within an explosion-proof enclosure and connected to multiple different downhole anti-violation technology products, used to convert the current working status information of each downhole anti-violation technology product into current working status information receivable by a terminal device; a terminal device disposed within the explosion-proof enclosure and connected to the signal conversion interface circuit, used to process the current working status information of each downhole anti-violation technology product to obtain processed current working status information of each downhole anti-violation technology product; and an anti-violation cloud system disposed above ground, used to identify whether there is a violation in the processed current working status information of each downhole anti-violation technology product sent by the terminal device via 5G / 6G communication, and, when a violation is identified, to perform anti-violation processing on the downhole anti-violation technology product with the violation via 5G / 6G communication.
[0026] The present invention also includes: a plurality of different environmental signal sensors disposed within the explosion-proof housing and connected to the terminal device, specifically including: a first speaker and a first microphone installed within the explosion-proof housing and in a first hole on the left side of the transparent protective cover; a second speaker and a second microphone installed within the explosion-proof housing and in a second hole on the right side of the transparent protective cover; and a camera, a phototube, an acceleration probe, a gas probe, a temperature probe, a humidity probe, and a wind speed probe respectively installed within the explosion-proof housing and in multiple holes on the front side of the transparent protective cover.
[0027] Specifically, the explosion-proof enclosure has a transparent protective cover on its upper cover plate; the terminal device includes a touch-operable display screen and a device motherboard, and the display screen and the device motherboard are separate; wherein, the display screen is fastened to the inside of the explosion-proof enclosure's upper cover plate by a fixing strap and is located directly below the transparent protective cover; the device motherboard is located directly above the signal conversion interface circuit, and the device motherboard and the signal conversion interface circuit are connected via wired or wireless means.
[0028] The present invention further includes: a first lead wire device fixed on the left side of the explosion-proof enclosure for introducing a first input or output wire, wherein one end of the first input or output wire is connected to one end of the signal conversion interface circuit, and the other end is connected to the downhole anti-violation technology product and the downhole anti-violation communication system; and a second lead wire device fixed on the right side of the explosion-proof enclosure for introducing a second input or output wire, wherein one end of the second input or output wire is connected to the other end of the signal conversion interface circuit, and the other end is connected to the downhole anti-violation technology product and the downhole anti-violation communication system.
[0029] The underground anti-violation technology products include: anti-violation cover opening sensor, anti-violation backup protection test device, power-on interlock anti-violation sensor, gas over-limit interlock anti-violation sensor, underground grounding resistance test device and switch; the underground anti-violation communication system includes: anti-violation network coordinator, communication substation, communication cable, anti-violation power supply, signal converter, power-off device and explosion-proof equipment.
[0030] Furthermore, the multiple different environmental signal sensors are also used to collect different environmental information and work information of personnel underground, and send the collected different environmental information and work information of personnel underground to the terminal device; the terminal device is also used to process the environmental information and work information to obtain processed environmental information and / or work information, and send the processed environmental information and / or work information to the anti-violation cloud system through 5G / 6G communication, so that the anti-violation cloud system can perform anti-violation processing.
[0031] Furthermore, the terminal device is also used to send the 5G / 6G wireless signal containing the ID of the underground anti-violation technology product and control instructions issued by the anti-violation cloud system to the corresponding underground anti-violation technology product via 5G / 6G communication, so that the underground anti-violation technology product can perform control processing according to the control instructions.
[0032] The present invention also includes: a monitoring terminal wirelessly connected to the anti-violation cloud system, used to view the working status of the downhole anti-violation technology product or the downhole information collected by the environmental signal sensor.
[0033] Figure 6 This is one of the flowcharts of an anti-violation signal processing method based on an anti-violation network coordinator according to the present invention, such as... Figure 6 As shown, it includes:
[0034] The monitoring terminal uses the current working status of the underground anti-violation technology product and / or the current underground information collected by each environmental signal sensor to generate a 5G / 6G wireless signal containing the underground anti-violation technology product ID and anti-violation control instructions, and sends the 5G / 6G wireless signal to the terminal device via the anti-violation cloud system;
[0035] The terminal device, based on the downhole anti-violation technology product ID in the 5G / 6G wireless signal, sends the anti-violation control command in the 5G / 6G wireless signal to the corresponding downhole anti-violation technology product via 5G / 6G communication, so that the downhole anti-violation technology product can perform operation processing according to the anti-violation control command.
[0036] Figure 7This is a second flowchart of an anti-violation signal processing method based on an anti-violation network coordinator according to the present invention, as shown below. Figure 7 As shown, it includes:
[0037] The terminal device transmits the touch operation information of the staff on the touch-operable display screen to the anti-violation cloud system via 5G / 6G communication.
[0038] The anti-violation cloud system determines the 5G / 6G communication device with 5G / 6G communication function and the anti-violation control command for anti-violation control based on the touch operation information, and sends the anti-violation control command to the 5G / 6G communication device.
[0039] In summary, the anti-violation signal processing system and method based on an anti-violation network coordinator of the present invention has the following characteristics:
[0040] 1. The anti-violation network coordinator in the anti-violation network coordinator signal processing system includes: an explosion-proof housing made of metal or non-metal, with a touch operation window on its top cover, a transparent protective cover installed on top of the window, and a touch-operable mobile phone display screen fixed below it, connected to the signal processing circuits such as the mobile phone motherboard. Touch operation of the mobile phone display screen can only be performed after the transparent protective cover is opened. Openings are made on the top cover and around the perimeter of the housing to install environmental signal sensors, which are connected to the signal conversion interface circuit via wired or wireless means. A lead wire device fixed on the outer casing introduces the wire. The signal conversion interface circuit fixed inside the outer casing connects to the wire and is wired or wirelessly connected to the signal processing circuits such as the 5G / 6G mobile phone motherboard fixed inside the outer casing. The signal conversion interface circuit is wired or wirelessly connected to the anti-violation technology products and anti-violation communication system outside the outer casing. The underground anti-violation communication system connects to the underground ring network and transmits data to the ground information system. The signal processing circuits such as the 5G / 6G mobile phone motherboard connect to the anti-violation technology products, the underground anti-violation communication system, or the 5G / 6G communication equipment through an antenna. The signal processing circuits are connected to the ground anti-violation center, the anti-violation cloud system, and the mobile anti-violation APP through the 5G / 6G communication equipment. The intelligent processing method for anti-violation signals includes: enabling the "ground terminal" to control the "underground anti-violation technology products" through the "anti-violation cloud system", or enabling the "touch-operable mobile phone display screen" to control the equipment with 5G / 6G communication through the "anti-violation cloud system".
[0041] 2. The transparent protective cover is made of flame-retardant, anti-static, transparent material with sufficient mechanical strength, which can play an explosion-proof role and transmit images to the outside or receive external light signals through the transparent material. It is fixed around the touch operation window with special fastening bolts that cannot be opened by non-professionals, so that touch operation cannot be achieved outside the transparent protective cover.
[0042] Alternatively, a transparent cover can be replaced with a transparent film for the mobile phone display screen, or a transparent cover that wraps around the mobile phone display screen.
[0043] 3. The touch-operable mobile phone display screen is fixed and sealed to the top cover.
[0044] 4. The anti-violation technology products include: anti-violation cover opening sensor, or anti-violation backup protection test device, or electrically interlocked anti-violation sensor system, or gas over-limit interlocked anti-violation sensor system. The anti-violation technology products are connected to the anti-violation network coordinator, communication substation base station, communication cable and optical cable, anti-violation power supply, signal converter, power-off device and explosion-proof equipment in the underground anti-violation communication system. The status signal of the anti-violation technology products is transmitted to the ground information processing center, the anti-violation cloud system of the ground anti-violation communication system, and the mobile APP of the electromechanical supervision personnel. The working status of the anti-violation technology products can be seen on the ground information processing center terminal and the mobile APP terminal of the electromechanical supervision personnel.
[0045] 5. The ground terminal controls the underground anti-violation technology products through the anti-violation cloud system. On the ground, the electromechanical supervision personnel can command the anti-violation backup protection test device to conduct a remote leakage current test via their mobile APP terminal or information processing center terminal. After processing by the anti-violation software of the anti-violation cloud system platform, the 5G / 6G wireless signal is transmitted to the 5G / 6G anti-violation backup protection test device through the 5G / 6G server, the underground 5G / 6G transmission ring network, and the underground 5G / 6G base station. After intelligent processing, the relay of the device is activated, connecting the safety critical test resistor to the power grid. The leakage current protection device of the feeder switch is activated, and the feeder switch trips. The 5G / 6G anti-violation backup protection test device converts the tripping time and other status signals of the feeder switch into 5G / 6G signals and transmits them to the ground anti-violation cloud system platform. After processing by the anti-violation software, the processing result is notified to the electromechanical supervision personnel's mobile APP terminal or information processing center terminal.
[0046] When the cover-opening sensor of the underground anti-violation technology product is activated, its action signal is transmitted to the 5G / 6G mobile phone motherboard system via the signal conversion interface circuit, then to the underground 5G / 6G base station via the 5G / 6G antenna, and finally to the ground anti-violation cloud system via the underground communication system. After processing, the system sends a command to cut off the upper-level power supply switch, which is transmitted to the underground communication system via the ground communication system. The corresponding power supply switch receives the command and cuts off the power, feeding back the power-off signal to the anti-violation cloud system. The anti-violation cloud system then synchronously transmits each processing result to the mobile APP terminal or information processing center terminal of the electromechanical supervision personnel.
[0047] 6. After opening the transparent protective cover, perform touch operation. Open the transparent protective cover underground and use your fingers to touch the screen keyboard to conduct on-site anti-violation backup protection tests, check and maintain the working status of the communication system, or report the underground situation to the surface.
[0048] 7. The environmental signal sensor includes a speaker and a microphone: When the operator calls out their name or says "I want to open the cover" into the microphone, the sound is transmitted to the ground-based anti-violation cloud system. After judgment, if "opening the cover" is allowed, the anti-violation cloud system sends a command to the signal forwarding circuit, and the electrically locked anti-violation sensor connected to it unlocks. At the same time, the speaker emits a sound indicating that opening the cover is allowed. If "opening the cover" is not allowed, the speaker emits a sound indicating that opening the cover is strictly prohibited.
[0049] This may include ordinary camera sensors or infrared camera sensors. When an electrical worker's eyes, face, or fingerprint are pointed at the camera, the captured image is transmitted to the ground-based anti-violation cloud system. After judgment, if "work" is permitted, a safety warning sound will be emitted from a loudspeaker.
[0050] This may include a gas probe. When a gas over-limit signal is transmitted to the mobile phone motherboard, it is quickly processed. The gas over-limit interlock and anti-violation sensor are then interlocked to prohibit opening the cover. At the same time, the speaker alarms and transmits the signal to the ground information center and the anti-violation cloud system, as well as to the electromechanical supervision personnel's mobile APP for alarm.
[0051] This may include sensors for temperature and acceleration. When the temperature or acceleration exceeds the specified value, the signal is transmitted to the ground information center and the anti-violation cloud system, and also to the mobile APP of the electromechanical supervision personnel to trigger an alarm.
[0052] The present invention will now be described in detail with reference to specific embodiments.
[0053] Example 1
[0054] like Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5As shown, the outer casing 11 is made of metal or plastic, and its upper cover 7 is sealed and fixed by fastening bolts 5. A touch operation window 1 is opened on the upper cover 7, and a transparent protective cover 3 is sealed and installed on it with special bolts. After opening the transparent protective cover 3, the mobile phone display screen 23, which is fixed and sealed on the upper cover 7, can be touched and operated. The transparent protective cover 3 can prevent mechanical damage to the display screen 23, or serve as an explosion-proof and waterproof cover, or transmit images to the outside through transparent material, or receive external light signal input. The transparent cover is replaced by a transparent film for the mobile phone display screen, or by a transparent cover wrapped around the mobile phone display screen. A first hole 4 is opened on the upper cover 7 to install environmental signal sensors 16 such as speakers and microphones. The first lead wire device 15 and the second lead wire device 21, which are fixed on the outer casing 11, introduce the first input or output wire (13). The signal conversion interface circuit 17 is connected to the first input or output wire 13. The signal processing circuit 20, such as the mobile phone motherboard, is connected to the signal conversion interface circuit 17. The sensors 19, such as the camera and phototube, or the sensors such as the speaker and microphone, are connected to the signal processing circuit 20, such as the mobile phone motherboard. Figure 2 and Figure 4 The C18 central hole can be used to mount sensors such as cameras and phototubes. Figure 1 The second hole 25 in the middle can be used to install sensors 24 such as microphones and speakers. Figure 1 and Figure 3 In the middle, the mobile phone display screen fixing strap 22 secures the mobile phone display screen 23 to the upper cover plate 7. Sealing gaskets 9 are added to explosion-proof parts.
[0055] The system includes: a touch operation window 1 for touching the mobile phone display screen 23 after opening the transparent protective cover 3; the transparent protective cover 3 for preventing mechanical damage or accidental operation of the display screen 23, or for acting as an explosion-proof cover, transmitting images outward through the transparent material, or receiving external light signal input; a first hole 4 for installing environmental signal sensors, including: a camera, phototube, speaker and microphone, accelerometer, gas probe, temperature probe, humidity probe, wind speed probe, etc.; a signal conversion interface circuit 17, including: switch signals, 485 signals, CAN signals, optical signals, WiFi signals, and Bluetooth signal interfaces, which converts these signals into USB signals, Bluetooth signals, or WiFi signals that the mobile phone can receive and transmits them to the mobile phone motherboard; hole C18 for installing sensors such as cameras and phototubes; a second hole 25 for installing sensors such as microphones and speakers; and a WiFi communication device 35 including an electric interlock anti-violation sensor and a gas interlock anti-violation sensor.
[0056] This invention allows for the disassembly of any new or old 5G / 6G mobile phone model, following prescribed procedures. The motherboard 20 is removed, inspected, and repaired before being installed in the casing 11. The signal is output through its antenna T. If the antenna signal is weak, an external signal booster can be connected. Its USB input port is connected to the signal converter circuit 17, and the switch input port of the signal converter circuit 17 is connected to the passive contact of the wired anti-violation cover opening sensor 39. When the contacts of the cover-opening sensor 39 are closed or opened, the switch input signal converter circuit 17 converts the switch signal into a USB signal that can be received by the mobile phone, and then sends it to the mobile phone motherboard 20. After processing by the mobile phone, the antenna sends out a 5G / 6G signal. The underground 5G / 6G base station 29 receives the 5G / 6G signal and transmits it to the ground information processing center 26 and the anti-violation cloud system 27. After processing by the software of the anti-violation cloud system 27, the information processing center transmits the instruction to the corresponding power supply switch 31 underground, causing the power supply switch 31 to preemptively open the cover and cut off the power. After the cover is opened, it is locked and cannot be powered. At the same time, an alarm is sent to the information processing center 26 and the electromechanical supervision personnel's mobile APP 28.
[0057] Example 2
[0058] like Figure 5 As shown, the ground information processing center 26 issues a backup protection test command for non-compliance testing (i.e., a remote leakage test command) on the ground. This command is recognized by the software of the non-compliance cloud system 27 and transmitted to the underground 5G / 6G base station 29, then to the mobile phone motherboard 20. After processing, it is transmitted to the signal converter circuit 17, which transmits the command to the backup protection test device for non-compliance testing (i.e., the remote leakage test device) 41 via 485 wired communication or fiber optic communication. This commands the remote leakage test device to activate and conduct a remote leakage test, simultaneously measuring the leakage action time. The action signal and other data are transmitted in reverse along the aforementioned lines. Specifically, the mobile phone motherboard 20 sends a 5G / 6G signal to the ground information processing center 26, which then wirelessly transmits it to the non-compliance cloud system 27 for storage and processing. After processing, the test results, action time, and other parameters are displayed to the ground information processing center 26 and the electromechanical supervision personnel's mobile APP 28. Underground, the mobile phone display screen 23 can also display the test results, action time, and other parameters. The remote leakage test and backup protection test can also be conducted on-site underground by touching the mobile phone display screen 23. The touch test route is as follows: Click the "remote leakage test button" on the mobile phone display screen 23. The signal is transmitted to the mobile phone motherboard 20, processed and transmitted to the signal converter circuit 17, which commands the remote leakage test device (anti-violation backup protection test device) 41 to act. After the test, the results are fed back to the underground mobile phone display screen 23 and the relevant terminals on the ground.
[0059] Example 3
[0060] The anti-violation network coordinator connects to the switch via optical cable through the optical communication port of the signal converter circuit 17, and transmits relevant signals to the ring network.
[0061] It can be connected to a power supply switch 31 with 5G / 6G communication capabilities. After its 5G / 6G signal is connected to the underground 5G / 6G base station A29, it is wirelessly connected to the signal processing circuit 20 of the anti-violation network coordinator mobile phone motherboard. The signal processing circuit 20 of the mobile phone signal motherboard extracts the electrical parameters such as voltage, current, and power factor of the power supply switch 31 according to the program, displays them on the underground mobile phone display screen 23, and transmits them to the ground anti-violation cloud system 27 and the mobile APP 28 of the electromechanical supervision personnel according to the above path.
[0062] The magnetic starter 33 is connected to the 485 communication port of a certain anti-violation network coordinator. The anti-violation network coordinator converts and outputs 5G / 6G signals, which are then connected to the underground 5G / 6G base station B34 via 5G / 6G signals. Its communication principle is similar to that of the power supply switch 31 with 5G / 6G communication function, which will be omitted.
[0063] The gas interlocking / anti-violation sensor 35, which can communicate via Wi-Fi, and the underground grounding resistance testing device, which can communicate via 4G, are connected. Their Wi-Fi or 4G signals are transmitted to the mobile phone motherboard 20, processed by the motherboard, and then transmitted to the ground anti-violation cloud system to execute relevant instructions. Specific details are omitted.
[0064] The optical communication interface of the signal converter interface circuit 17 of the anti-violation network coordinator is connected to the optical cable, and the input switch 43 is connected to the ring network.
[0065] like Figure 1 As shown, by opening the transparent protective cover 3 underground, it can be operated by touch like a mobile phone to conduct on-site anti-violation backup protection tests, check and maintain the working status of the communication system, or report the underground situation to the surface.
[0066] Through sensors 16 such as speakers and microphones, human-machine interaction is possible, much like a mobile phone. When the operator speaks their name or says "I want to open the cover" into the microphone, the voice is transmitted to the ground-based anti-violation cloud system. After judgment, if "opening the cover" is permitted, the anti-violation cloud system sends a command to the signal relay circuit, which unlocks the electrically interlocked anti-violation sensor connected to it. At the same time, the speaker emits a sound indicating that opening the cover is permitted. If "opening the cover" is not permitted, the speaker emits a sound indicating that opening the cover is strictly prohibited.
[0067] Using sensors such as cameras and photocells, the system can take photos and videos like a mobile phone, and identify violations. When an electrical worker's eyes, face, or fingerprints are pointed at the camera, the image is transmitted to the ground-based anti-violation cloud system. After evaluation, if "work" is permitted, a safety warning sound will be emitted through a loudspeaker.
[0068] The outer casing 11 has multiple holes C18 for installing temperature, acceleration, and other sensors to detect disasters or provide early warnings of violations. For example, if multiple temperatures rise before a fire occurs and the acceleration of illegally powered mobile devices increases, this information can be sent to the ground-based anti-violation cloud system for analysis and judgment, enabling disaster prediction and early warning of violations.
[0069] When the gas over-limit signal is transmitted to the mobile phone motherboard, it is quickly processed. The gas over-limit interlock and anti-violation sensor are locked to prohibit opening the cover. At the same time, the speaker alarm is triggered, and the signal is transmitted to the ground information center and the anti-violation cloud system, as well as to the mobile APP of the electromechanical supervision personnel to trigger an alarm.
[0070] A large number of discarded smartphones are being utilized to connect to various networks and devices, and to identify various violation signals. This not only promotes the intelligent development of underground communication but also achieves energy conservation and emission reduction. The combination of a transparent protective cover and a touch-screen smartphone produces unexpected results. In the explosive environment of underground mines, it is flame-retardant, anti-static, transparent, impact-resistant, explosion-proof, and waterproof. It also features a touch-screen display and can transmit images or receive external light signals through the transparent material. Once a designated person opens the transparent cover, human-machine interaction between the explosion-proof equipment and the operator is possible, whereas non-designated personnel cannot open the cover. With the transparent cover on, it can identify violations by recognizing the operator's face and gestures. Previously, it was difficult to install touch-screen smartphones on explosion-proof equipment because the mechanical strength, explosion-proof, and waterproof requirements were insufficient for underground use. While explosion-proof smartphones can work underground, they are generally carried on the person, and the requirements for mechanical strength and waterproofing are much lower compared to installation on equipment. This combined technology enables human-machine interaction for all explosion-proof equipment, producing unexpected results. Although 6G phones are not yet on the market, they are expected to be available around 2030. At that time, purchasing a 6G phone and referring to this embodiment will allow you to upgrade this anti-violation network coordinator and connect to a 6G network. Regardless of future advancements in communication, as long as mobile communication is still used, this invention will benefit society by referring to this embodiment.
[0071] The explosion-proof enclosure houses environmental signal sensors such as microphones and speakers installed in its surrounding openings. Inside the enclosure is a mobile phone assembly including a motherboard and touchscreen, capable of recognizing workers' voices, identifying violations through sound, and issuing warnings to workers. The enclosure also houses other environmental signal sensors such as cameras, accelerometers, gas detectors, temperature probes, humidity probes, and wind speed probes. These signals are transmitted via signal conversion interface circuits to the mobile phone's motherboard and other signal processing circuits, and then sent to the ground-based anti-violation cloud system. Because the anti-violation cloud system can utilize various software programs, it can identify various violations and underground environmental characteristics. Compared to using a few software programs at existing underground substations to identify violations or environmental features, this produces unexpectedly better results.
[0072] The explosion-proof shell houses mobile phone components, environmental signal sensors, signal conversion interface circuits, etc., and connects with the underground anti-violation communication system, underground communication system, ground communication system, anti-violation cloud system, and anti-violation mobile APP to form an anti-violation network coordinator system. This completely solves the global problem of artificial intelligence recognizing violations and produces unexpected results.
[0073] Although the present invention has been described in detail above, it is not limited thereto, and those skilled in the art can make various modifications based on the principles of the present invention. Therefore, all modifications made in accordance with the principles of the present invention should be understood to fall within the protection scope of the present invention.
Claims
1. A violation-prevention signal processing system based on a violation-prevention network coordinator, characterized in that, include: A signal conversion interface circuit, installed inside an explosion-proof enclosure and connected to multiple different downhole anti-violation technology products, is used to convert the current working status information of each downhole anti-violation technology product into current working status information that can be received by the terminal equipment. A terminal device installed inside an explosion-proof enclosure and connected to the signal conversion interface circuit is used to process the current working status information of each downhole anti-violation technology product to obtain the processed current working status information of each downhole anti-violation technology product. The anti-violation cloud system installed above ground is used to identify whether there is any violation in the current working status information of each underground anti-violation technology product based on the processed current working status information of each underground anti-violation technology product sent by the terminal device via 5G / 6G communication, and to perform anti-violation processing on the underground anti-violation technology product with the violation when a violation is identified, via 5G / 6G communication.
2. The system according to claim 1, characterized in that, Also includes: The plurality of different environmental signal sensors disposed within the explosion-proof enclosure and connected to the terminal device specifically include: A first speaker and a first microphone are installed inside the explosion-proof enclosure and in the first hole on the left side of the transparent protective cover; A second speaker and a second microphone are installed inside the explosion-proof housing and in the second hole on the right side of the transparent protective cover; Cameras, phototubes, acceleration probes, gas probes, temperature probes, humidity probes, and wind speed probes are respectively installed inside the explosion-proof housing and in multiple holes on the front side of the transparent protective cover.
3. The system according to claim 2, characterized in that, The explosion-proof housing has a transparent protective cover on its upper cover plate; the terminal device includes a touch-operable display screen and a device motherboard, and the display screen and the device motherboard are in a separate state; Or the terminal device may include a used mobile phone / 6G mobile phone; The display screen is fastened to the inside of the upper cover of the explosion-proof housing by a fixing strap and is located directly below the transparent protective cover; the main board of the device is located directly above the signal conversion interface circuit, and the main board of the device and the signal conversion interface circuit are connected by wired or wireless means. Alternatively, the used mobile phone / 6G mobile phone may be fastened to the inside of the upper cover of the explosion-proof shell by a fixing strap, and located directly below the transparent protective cover; the used mobile phone / 6G mobile phone may be located directly above the signal conversion interface circuit, and the used mobile phone / 6G mobile phone and the signal conversion interface circuit may be connected by wired or wireless means.
4. The system according to claim 3, characterized in that, Also includes: The first lead wire device fixed on the left side of the explosion-proof housing is used to introduce the first input or output wire, wherein one end of the first input or output wire is connected to one end of the signal conversion interface circuit, and the other end is connected to the underground anti-violation technology product and the underground anti-violation communication system. The second lead wire device, fixed to the right side of the explosion-proof housing, is used to introduce a second input or output wire. One end of the second input or output wire is connected to the other end of the signal conversion interface circuit, and the other end is connected to the underground anti-violation technology product and the underground anti-violation communication system.
5. The system according to claim 4, characterized in that, The underground anti-violation technology products include: anti-violation cover opening sensor, anti-violation backup protection test device, power-on interlock anti-violation sensor, gas over-limit interlock anti-violation sensor, underground grounding resistance test device and switch; the underground anti-violation communication system includes: anti-violation network coordinator, communication substation, communication cable, anti-violation power supply, signal converter, power-off device and explosion-proof equipment.
6. The system according to claim 5, characterized in that, The multiple different environmental signal sensors are used to collect different environmental information and work information of the personnel downhole, and send the collected different environmental information and work information of the personnel downhole to the terminal device; The terminal device is further configured to process the environmental information and work information to obtain processed environmental information and / or work information, and send the processed environmental information and / or work information to the anti-violation cloud system via 5G / 6G communication, so that the anti-violation cloud system can perform anti-violation processing.
7. The system according to claim 6, characterized in that, The terminal device is also used to send the 5G / 6G wireless signal containing the ID of the underground anti-violation technology product and control instructions issued by the anti-violation cloud system to the corresponding underground anti-violation technology product via 5G / 6G communication, so that the underground anti-violation technology product can perform control processing according to the control instructions.
8. The system according to claim 7, characterized in that, Also includes: The monitoring terminal, which is wirelessly connected to the anti-violation cloud system, is used to view the working status of the underground anti-violation technology products or the underground information collected by the environmental signal sensor.
9. A method for processing anti-violation signals based on an anti-violation network coordinator, characterized in that, include: The monitoring terminal uses the current working status of the underground anti-violation technology product and / or the current underground information collected by each environmental signal sensor to generate a 5G / 6G wireless signal containing the underground anti-violation technology product ID and anti-violation control instructions, and sends the 5G / 6G wireless signal to the terminal device via the anti-violation cloud system; The terminal device, based on the downhole anti-violation technology product ID in the 5G / 6G wireless signal, sends the anti-violation control command in the 5G / 6G wireless signal to the corresponding downhole anti-violation technology product via 5G / 6G communication, so that the downhole anti-violation technology product can perform operation processing according to the anti-violation control command.
10. A method for processing anti-violation signals based on an anti-violation network coordinator, characterized in that, include: The terminal device transmits the touch operation information of the staff on the touch-operable display screen to the anti-violation cloud system via 5G / 6G communication. The anti-violation cloud system determines the 5G / 6G communication device with 5G / 6G communication function and the anti-violation control command for anti-violation control based on the touch operation information, and sends the anti-violation control command to the 5G / 6G communication device.