Control device and control method of comprehensive protection illuminating lamp
Through the combination of electro-hydraulic control system and control box, the precise control of comprehensive protection lighting is achieved, and the problems of insufficient control and single function in the existing technology are solved, and the auxiliary hazard avoidance and lamp protection effects are achieved in the event of disasters under the mine.
Patent Information
- Application Number
- CN202411873091.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-05-06
AI Technical Summary
The control of existing comprehensive protection lighting is not accurate enough, and the control function is single, so it cannot intelligently adjust the brightness, cannot be applied to complex and harsh working face environments, and cannot effectively assist in hazards when disasters occur under the mine.
The electro-hydraulic control system is used to generate target control signals and carry out carrier conversion processing through the control box to achieve accurate control of comprehensive protection lighting, including switching control and brightness adjustment, which can assist in hazard avoidance in the event of disasters under the mine.
It realizes accurate and flexible control of comprehensive protection lighting, can play an auxiliary role in avoiding hazards in the mine disasters, and strengthens the protection of lighting parts of the lamps to avoid slag impact.
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Figure CN119946957A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of mine lighting, and in particular to a control device and a control method for a comprehensive protection lighting lamp. Background Art
[0002] Comprehensive protection lighting is a lighting device designed for special environments such as underground. Its full name is lighting signal comprehensive protection device. Comprehensive protection lighting can not only provide a stable lighting source in special environments such as underground, but also effectively avoid safety accidents caused by power failures through its protection function. It integrates lighting and protection functions in one, providing stable and reliable lighting guarantee for underground operations.
[0003] The existing comprehensive protection lighting control has at least the following disadvantages when in use: 1. Most of the existing comprehensive security lighting lamps are unable to intelligently adjust the brightness of the lamps. When no one is working in some areas, the lamps are always on, which can easily cause a waste of resources. In addition, most mining areas are unable to provide risk avoidance assistance when danger occurs.
[0004] 2. Existing comprehensive security lighting lamps cannot be used in working surfaces. The working surface conditions are complex and harsh, with many light sources and heat sources. Their sensing accuracy cannot meet the requirements for working surface use. Summary of the invention
[0005] The present invention provides a control device and a control method for a comprehensive protection lighting lamp, so as to solve the defects in the prior art that the control of the comprehensive protection lighting lamp is not precise enough and the control function of the comprehensive protection lighting lamp is single, and realizes the use of an electro-hydraulic control system to accurately and flexibly control the comprehensive protection lighting lamp to execute various command operations. When a disaster occurs in a mine, the comprehensive protection lighting lamp can assist in risk avoidance and can enhance the protection of the lighting part of the lamp to prevent slag from impacting the lighting part of the lamp.
[0006] In a first aspect, the present invention provides a control device for a comprehensive protection lighting lamp, comprising an electro-hydraulic control system and at least two comprehensive protection lighting lamps, wherein the electro-hydraulic control system is connected to the at least two comprehensive protection lighting lamps through a series power supply line; the at least two comprehensive protection lighting lamps are connected in sequence; a control box is connected in series at the middle position of the power supply line connecting the electro-hydraulic control system and the at least two comprehensive protection lighting lamps; The electro-hydraulic control system is used to generate a target control signal and send the target control signal to the control box through the power supply line; The control box is used to perform carrier conversion processing on the target control signal sent by the electro-hydraulic control system, generate a carrier signal, and load the carrier signal to a power supply line connected in series with the control box; The comprehensive protection lighting lamp is used to analyze the carrier signal to obtain a signal analysis result, and determine whether the current comprehensive protection lighting lamp is the target comprehensive protection lighting lamp based on the signal analysis result. When it is determined that the current comprehensive protection lighting lamp is the target comprehensive protection lighting lamp, the instruction operation corresponding to the signal analysis result is executed.
[0007] Preferably, according to the control device of the comprehensive security lighting provided by the present invention, the comprehensive security lighting is also used to send the signal analysis result to the next comprehensive security lighting when it is determined that the current comprehensive security lighting is not the target comprehensive security lighting, until the target comprehensive security lighting is determined from the remaining comprehensive security lighting, and the target comprehensive security lighting is controlled to execute the corresponding instruction operation.
[0008] Preferably, according to the control device for the comprehensive protection lighting lamp provided by the present invention, each of the comprehensive protection lighting lamps comprises a lighting lamp, a wired communication instruction receiving component, an instruction parsing component, and an instruction execution component, wherein the wired communication instruction receiving component, the instruction parsing component, and the instruction execution component are connected to the lighting lamp through the power supply line connected in series; the wired communication instruction receiving component comprises at least a filter and a demodulator, and the filter and the demodulator are connected through the power supply line; The wired communication instruction receiving component is used to extract the carrier signal loaded into the power supply line via the control box by using the filter and the demodulator, and send the extracted carrier signal to the instruction parsing component; The instruction parsing component is used to parse the carrier signal sent by the wired communication instruction receiving component to obtain a signal parsing result, wherein the signal parsing result at least includes a target comprehensive protection lighting lamp number and a lighting lamp control instruction; And, it is also used to determine the target comprehensive protection lighting lamp according to the target comprehensive protection lighting lamp number, and when the target comprehensive protection lighting lamp is determined, send the corresponding lighting lamp control instruction to the instruction execution component, so that the instruction execution component controls the target comprehensive protection lighting lamp to execute the corresponding instruction operation; The instruction execution component is used to receive the lighting control instruction sent by the wired communication instruction receiving component, and control the target comprehensive protection lighting to execute the corresponding instruction operation according to the lighting control instruction; The lighting lamp is used to execute an instruction operation corresponding to the lighting lamp control instruction.
[0009] Preferably, according to the control device of the comprehensive protection lighting lamp provided by the present invention, the instruction execution component comprises: a switch control component and a brightness adjustment component, and the switch control component and the brightness adjustment component are connected to the lighting lamp through the power supply line connected in series; The switch control component is used to control the lighting lamp to perform a turn-on operation or a turn-off operation according to the lighting lamp control instruction; A brightness adjustment component is used to adjust the brightness and / or lighting duration of the lighting lamp according to the lighting lamp control instruction.
[0010] Preferably, according to the control device for the comprehensive protection lighting provided by the present invention, a wireless communication component is provided in the electro-hydraulic control system; The wireless communication component is used to send the target control signal to the target comprehensive protection lighting lamp wirelessly, so that the target comprehensive protection lighting lamp executes the instruction operation corresponding to the target control signal.
[0011] Preferably, according to the control device of the comprehensive protection lighting lamp provided by the present invention, a wireless communication instruction receiving component is further provided in the comprehensive protection lighting lamp, and the wireless communication instruction receiving component is connected to the instruction parsing component through a power supply line; The wireless communication instruction receiving component is used to receive the target control signal wirelessly and send the target control signal to the instruction parsing component; The instruction parsing component is further used to parse and process the target control signal sent by the wireless communication instruction receiving component to obtain a wireless signal parsing result, and send the wireless signal parsing result to the instruction execution component; The instruction execution component is used to receive the wireless signal analysis result sent by the wireless communication instruction receiving component, and control the lighting lamp to execute corresponding instruction operations according to the wireless signal analysis result.
[0012] Preferably, according to the control device for the comprehensive protection lighting provided by the present invention, an external information collection component is also provided in the electro-hydraulic control system; The external information collection component is used to collect environmental information, status information of the target comprehensive security lighting lamp, and personnel positioning information, and generate decision-making adjustment instructions based on the environmental information, the status information of the target comprehensive security lighting lamp and the personnel positioning information, and adjust the generation of the target control signal according to the decision-making adjustment instructions.
[0013] Preferably, according to the control device for the comprehensive protection lighting provided by the present invention, the wireless communication component is also used to resend the target control signal to the target comprehensive protection lighting when the status information of the target comprehensive protection lighting indicates that the target comprehensive protection lighting has not executed the corresponding instruction operation.
[0014] Preferably, according to the control device for the comprehensive protection lighting lamp provided by the present invention, the electro-hydraulic control system further comprises at least two electro-hydraulic control components, each of which is connected in series via a power supply line; Each electro-hydraulic control component is used to generate the target control signal using a lighting control algorithm, and determine the target electro-hydraulic control component according to the decision-making and adjustment instructions, so as to use the target electro-hydraulic control component to control the target comprehensive protection lighting within the wireless control distance to perform corresponding instruction operations; wherein the wireless control distance is determined based on the position information of the target electro-hydraulic control component and the position information of each comprehensive protection lighting.
[0015] In a second aspect, the present invention further provides a control method for a comprehensive protection lighting lamp, wherein the control device of the comprehensive protection lighting lamp comprises an electro-hydraulic control system and at least two comprehensive protection lighting lamps, wherein the electro-hydraulic control system is connected to the at least two comprehensive protection lighting lamps through a series power supply line; the at least two comprehensive protection lighting lamps are connected in sequence; a control box is connected in series at the middle position of the power supply line connecting the electro-hydraulic control system and the at least two comprehensive protection lighting lamps; generating a target control signal by using the electro-hydraulic control system, and sending the target control signal to the control box through the power supply line; Using the control box to perform carrier conversion processing on the target control signal sent by the electro-hydraulic control system to generate a carrier signal, and loading the carrier signal to a power supply line connected in series with the control box; Utilize the comprehensive protection lighting lamp to analyze the carrier signal to obtain a signal analysis result, and determine whether the current comprehensive protection lighting lamp is the target comprehensive protection lighting lamp according to the signal analysis result, and if it is determined that the current comprehensive protection lighting lamp is the target comprehensive protection lighting lamp, execute the instruction operation corresponding to the signal analysis result; And when it is determined that the current comprehensive protection lamp is not the target comprehensive protection lamp, the signal analysis result is sent to the next comprehensive protection lamp, until the target comprehensive protection lamp is determined from the remaining comprehensive protection lamps, and the target comprehensive protection lamp is controlled to execute the corresponding instruction operation.
[0016] In a third aspect, the present invention further provides an electronic device comprising a memory, a processor and a computer program stored in the memory and executable on the processor, wherein when the processor executes the program, a control method for a comprehensive protection lighting lamp as described above is implemented.
[0017] In a fourth aspect, the present invention further provides a non-transitory computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements a method for controlling a comprehensive protection lighting lamp as described in any one of the above.
[0018] In a fifth aspect, the present invention further provides a computer program product, comprising a computer program, which, when executed by a processor, implements any of the above-mentioned methods for controlling a comprehensive protection lighting lamp.
[0019] The present invention provides a control device and a control method for a comprehensive protection lighting lamp, which utilize an electro-hydraulic control system to generate a target control signal, and send the target control signal to a control box through a power supply line; utilize the control box to perform carrier conversion processing on the target control signal sent by the electro-hydraulic control system, generate a carrier signal, and load the carrier signal to a power supply line connected in series with the control box; utilize the comprehensive protection lighting lamp to analyze the carrier signal, obtain a signal analysis result, and determine whether the current comprehensive protection lighting lamp is a target comprehensive protection lighting lamp according to the signal analysis result, and execute the instruction operation corresponding to the signal analysis result when determining that the current comprehensive protection lighting lamp is a target comprehensive protection lighting lamp. The invention is used to solve the defects of the prior art that the control of the comprehensive protection lighting lamp is not accurate enough and the control function of the comprehensive protection lighting lamp is single, and realize the accurate and flexible control of the comprehensive protection lighting lamp by the electro-hydraulic control system to execute various instruction operations. When a disaster occurs in the mine, the comprehensive protection lighting lamp can play an auxiliary role in avoiding danger, and can strengthen the protection effect on the lighting part of the lamp to prevent slag from impacting the lighting part of the lamp. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] In order to more clearly illustrate the technical solutions in the present invention or the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0021] Figure 1 It is a structural schematic diagram of a control device for a comprehensive protection lighting lamp provided by the present invention.
[0022] Figure 2 It is a structural schematic diagram of the comprehensive protection lighting lamp provided by the present invention.
[0023] Figure 3 It is a structural schematic diagram of wirelessly controlling a comprehensive protection lighting lamp provided by the present invention.
[0024] Figure 4 It is a flow chart of the control method of the comprehensive protection lighting lamp provided by the present invention.
[0025] Figure 5 It is a structural schematic diagram of the electronic device provided by the present invention. DETAILED DESCRIPTION
[0026] In order to make the purpose, technical solution and advantages of the present invention clearer, the technical solution of the present invention will be clearly and completely described below in conjunction with the drawings of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0027] First, several nouns involved in the present invention are analyzed: The electro-hydraulic control system is an advanced control system that integrates electrical control and hydraulic transmission. It precisely controls hydraulic actuators through electronic devices such as computers or PLCs to achieve complex mechanical motion and force control.
[0028] Comprehensive protection lighting, whose full name is comprehensive protection lighting, is a lighting device designed specifically for industrial environments and has multiple functions.
[0029] In the related art, there are at least the following technical problems: At present, the comprehensive security lighting lamps in the mine are powered by a separate series connection, and the switch is uniformly controlled by the power supply end. Each lamp does not have a switch or command receiving and executing device, and the electro-hydraulic control system does not have the ability to control the comprehensive security lighting lamps.
[0030] In related technologies, on the basis of comprehensive protection lighting, the ability of lamps to manage energy consumption, perceive environmental hazards, and provide risk avoidance guidance is improved, but at the same time, a large number of components, devices and software programs are also integrated, which increases the complexity of the system and the production cost of this product is extremely high.
[0031] Combine the following Figure 1-Figure 5 The present invention describes a control device and a control method for a comprehensive protection lighting lamp, which are used to solve the defects of the prior art that the control of the comprehensive protection lighting lamp is not precise enough and the control function of the comprehensive protection lighting lamp is single, and realizes the use of an electro-hydraulic control system to accurately and flexibly control the comprehensive protection lighting lamp to execute various command operations. When a disaster occurs in a mine, the comprehensive protection lighting lamp can assist in risk avoidance and can enhance the protection of the lighting part of the lamp to prevent slag from impacting the lighting part of the lamp.
[0032] like Figure 1 The figure is a schematic diagram of the structure of the control device of the comprehensive protection lighting provided by the present invention, a control device of the comprehensive protection lighting comprises: An electro-hydraulic control system and at least two comprehensive protection lamps, wherein the electro-hydraulic control system is connected to the at least two comprehensive protection lamps through a series power supply line; the at least two comprehensive protection lamps are connected in sequence; a control box is connected in series at the middle position of the power supply line connecting the electro-hydraulic control system and the at least two comprehensive protection lamps.
[0033] The electro-hydraulic control system is used to generate a target control signal and send the target control signal to the control box through the power supply line.
[0034] The target control signal may include the number of the target comprehensive protection lighting lamp, and the target instruction operation, such as controlling the target comprehensive protection lighting lamp No. 1 to light up for 5 minutes.
[0035] The power supply line adopts power line sharing technology so as to transmit control instructions using the power supply line.
[0036] The electro-hydraulic control system is an advanced control system that integrates electrical control and hydraulic transmission. It uses computers or PLCs and other electronic devices to precisely control hydraulic actuators to achieve complex mechanical motion and force control. The electro-hydraulic control system is mainly composed of power supply, electronic control signal transmission, electro-hydraulic conversion, actuators and feedback sensors.
[0037] Power supply: Provides electrical energy.
[0038] Controller: Receives input signals, processes them, and outputs corresponding control signals. It can be a separate controller or embedded in a device such as a PLC (Programmable Logic Controller).
[0039] Sensors and detectors: used to measure the input and output parameters of the system, such as position, speed, pressure, etc. Common sensors include displacement sensors, pressure sensors, velocity sensors, etc.
[0040] Hydraulic pump: driven by an electric motor to increase the liquid pressure and provide hydraulic energy.
[0041] Hydraulic valve: controls the direction, flow rate and pressure of liquid flow to achieve precise control of hydraulic actuators. Including directional control valves, flow control valves, pressure control valves, etc.
[0042] Actuator: Usually a hydraulic cylinder or hydraulic motor that converts hydraulic energy into mechanical energy to achieve linear or rotary motion.
[0043] Feedback sensor: used to monitor the position, speed or force of the actuator and feed it back to the electronic control system to achieve closed-loop control.
[0044] The electro-hydraulic control system has the advantages of fast response speed, large output power, good impact resistance and high control accuracy.
[0045] The control box is used to perform carrier conversion processing on the target control signal sent by the electro-hydraulic control system, generate a carrier signal, and load the carrier signal to a power supply line connected in series with the control box.
[0046] Furthermore, the control box is used to realize the conversion of communication signals. First, it receives the message instruction (target control signal) issued by the electro-hydraulic control system, identifies that the receiving object is the instruction for controlling the mining lamp, and converts the target control signal corresponding to the instruction from the network signal / bus signal to a low-voltage power line carrier signal. Then, the high-frequency carrier is loaded onto the current (power supply line) through the modulator of the control box, so that the filter and demodulator set in the control module of the comprehensive protection lighting lamp can extract the carrier signal. The signal analysis component then analyzes the extracted carrier signal, matches the instruction (confirms itself as the recipient), and sends an execution signal. The instruction execution component executes the received current situation to realize the light switching and brightness adjustment.
[0047] In some embodiments, the control box is a box for installing electrical control components, which usually contains components such as circuit breakers, contactors, relays, buttons, indicator lights, etc. to achieve control and protection of the power system. The control box receives external control signals through internal control components, and then controls the corresponding actuator actions according to preset programs and logic. For example, when the start button is pressed, the control box will receive the start signal and then control the motor to start; when the motor has a fault such as overload or short circuit, the control box will receive a fault signal, then control the motor to stop running, and send out an alarm signal.
[0048] Furthermore, in the wired communication solution, it is necessary to connect a control box in series between the comprehensive protection lighting power supply and the series explosion-proof lamp. The control box is also connected to the network communication line of the electro-hydraulic controller (it can be directly connected from the communication line or through the controller-switch-control box method).
[0049] In the wired communication control strategy, the attenuation of the carrier signal output by the control box is no more than 5% per 100 meters, and the accuracy of signal analysis is no less than 99%.
[0050] like Figure 1 As shown, the electro-hydraulic control system (including multiple controllers) is connected in series through a power supply and communication line, and the comprehensive protection lighting is connected in series through a power supply line, and the power supply supplies power to both separately. In terms of communication, the electro-hydraulic control system controls the target comprehensive protection lighting through wired communication or wireless communication.
[0051] Both wired and wireless control strategies can be used to control the target comprehensive protection lighting. In the wired communication control strategy, the electro-hydraulic control system does not need to add additional communication hardware. The existing network cables of the electro-hydraulic control system can be used to transmit control instructions to the target comprehensive protection lighting based on photoelectric signal transmission methods such as inter-rack communication and industrial Ethernet.
[0052] The comprehensive protection lighting does not need to add a wireless signal receiving module, only a brightness control device (wired communication command receiving component, command parsing component, command execution component) needs to be added. The comprehensive protection lighting receives communication commands using power line sharing technology and uses the power supply line to transmit commands. The wired communication command receiving component, command parsing component, command execution component and the lighting fixture are connected in series inside the comprehensive protection lighting.
[0053] In the prior art, comprehensive protection lighting lamps are connected in series, with a lighting lamp inside and a flameproof shell outside, which are connected in series through wires.
[0054] In an embodiment of the present invention, as follows Figure 2 As shown, a control module is added to the series current to receive communication instructions on the power line (power supply line) and perform the brightness adjustment function.
[0055] The brightness control device of the comprehensive security lighting lamp includes at least: a wired communication command receiving component, a command parsing component, and a command execution component. The brightness control device has multiple control capabilities according to the model of the mining lamp: ① switch control: suitable for mining lamps that only support switch settings; ② gear adjustment control: suitable for mining lamps with brightness adjustment in gears; ③ stepless adjustment: suitable for mining lamps with stepless adjustment, the current input to the lamp is adjusted through the control module, and the control accuracy of the control module is not less than 0.01A; ④ three-color light source adjustment: the current control accuracy of the control module is not less than 0.01A, and the control of three-way current output is not less than 256 3 kind.
[0056] In some embodiments of the present invention, a control device for a comprehensive protection lighting lamp may also include only one comprehensive protection lighting lamp. Similarly, a control box is connected in series in the middle position of the power supply line connecting the electro-hydraulic control system and the comprehensive protection lighting lamp. The electro-hydraulic control system can control the comprehensive protection lighting lamp by wire through the control box, and can also remotely control a single comprehensive protection lighting lamp by wireless means.
[0057] The comprehensive protection lighting lamp is used to analyze the carrier signal to obtain a signal analysis result, and determine whether the current comprehensive protection lighting lamp is the target comprehensive protection lighting lamp based on the signal analysis result. When it is determined that the current comprehensive protection lighting lamp is the target comprehensive protection lighting lamp, the instruction operation corresponding to the signal analysis result is executed.
[0058] It is also used to send the signal analysis result to the next comprehensive protection lamp when it is determined that the current comprehensive protection lamp is not the target comprehensive protection lamp, until the target comprehensive protection lamp is determined from the remaining comprehensive protection lamps, and control the target comprehensive protection lamp to execute the corresponding instruction operation.
[0059] In some embodiments of the present invention, each of the comprehensive security lighting lamps includes a lighting lamp, a wired communication instruction receiving component, an instruction parsing component, and an instruction execution component. The wired communication instruction receiving component, the instruction parsing component, and the instruction execution component are connected to the lighting lamp through the power supply line connected in series; the wired communication instruction receiving component includes at least a filter and a demodulator, and the filter and the demodulator are connected through the power supply line.
[0060] The wired communication instruction receiving component is used to extract the carrier signal loaded into the power supply line via the control box by using the filter and the demodulator, and send the extracted carrier signal to the instruction parsing component.
[0061] A filter is a frequency-selective device that allows signals within a specific frequency range to pass through while greatly attenuating or suppressing signals of other frequencies. The main function of a filter is to process and analyze signals, remove or enhance specific frequency components in the signal, and thus improve signal quality.
[0062] A demodulator is a device used to restore a modulated signal to its original baseband signal. In wireless communication systems, the transmitter usually modulates the baseband signal to adapt to the characteristics of the transmission channel, and a demodulator is needed at the receiver to restore the original signal.
[0063] The instruction parsing component is used to parse the carrier signal sent by the wired communication instruction receiving component to obtain a signal parsing result, and the signal parsing result at least includes the target comprehensive protection lighting lamp number and the lighting lamp control instruction.
[0064] Furthermore, it is used to determine the target comprehensive protection lighting lamp according to the target comprehensive protection lighting lamp number, and when the target comprehensive protection lighting lamp is determined, send the corresponding lighting lamp control instruction to the instruction execution component, so that the instruction execution component controls the target comprehensive protection lighting lamp to perform the corresponding instruction operation.
[0065] A matching process is performed based on the target comprehensive protection lighting lamp number and the numbers of multiple comprehensive protection lighting lamps to determine the target comprehensive protection lighting lamp.
[0066] The instruction execution component is used to receive the lighting control instruction sent by the wired communication instruction receiving component, and control the target comprehensive protection lighting to execute corresponding instruction operations according to the lighting control instruction.
[0067] The lighting lamp is used to execute an instruction operation corresponding to the lighting lamp control instruction.
[0068] In some embodiments of the present invention, the instruction execution component includes: a switch control component and a brightness adjustment component, and the switch control component and the brightness adjustment component are connected to the lighting lamp through the power supply line connected in series.
[0069] The switch control component is used to control the lighting lamp to perform a turn-on operation or a turn-off operation according to the lighting lamp control instruction.
[0070] A brightness adjustment component is used to adjust the brightness and / or lighting duration of the lighting lamp according to the lighting lamp control instruction.
[0071] In some embodiments of the present invention, a wireless communication component is provided in the electro-hydraulic control system; The wireless communication component is used to send the target control signal to the target comprehensive protection lighting lamp wirelessly, so that the target comprehensive protection lighting lamp executes the instruction operation corresponding to the target control signal.
[0072] More specifically, a wireless communication instruction receiving component is also provided in the comprehensive protection lighting lamp, and the wireless communication instruction receiving component is connected to the instruction parsing component through a power supply line.
[0073] The wireless communication instruction receiving component is used to receive the target control signal wirelessly and send the target control signal to the instruction parsing component.
[0074] The wireless communication instruction receiving component may be, but is not limited to, a WiFi, Bluetooth, ZigBee or other instruction signal receiving component.
[0075] The instruction parsing component is further used to parse and process the target control signal sent by the wireless communication instruction receiving component to obtain a wireless signal parsing result, and send the wireless signal parsing result to the instruction execution component.
[0076] Furthermore, the target control signal parsed at this time is a WiFi message signal or a Bluetooth message signal, and is no longer a carrier signal.
[0077] The instruction execution component is used to receive the wireless signal analysis result sent by the wireless communication instruction receiving component, and control the lighting lamp to execute corresponding instruction operations according to the wireless signal analysis result.
[0078] Furthermore, if Figure 3 As shown in the figure, in the wireless communication control strategy, the electro-hydraulic control system needs to add wireless communication hardware (WiFi communication module or Bluetooth communication module). The comprehensive protection lighting needs to adjust the WiFi, Bluetooth, ZigBee and other signal receiving modules to receive the target control signal sent by the controller of the electro-hydraulic control system.
[0079] Furthermore, in the embodiment of the present invention, each controller (brightness control device, including wireless communication instruction receiving component) is designed to control the nearby comprehensive security lighting. The underground WiFi communication distance can reach 50 meters, and the Bluetooth communication distance can reach 30 meters. ZigBee is based on cellular network coverage. There is one transmitting module for each controller. In the wireless communication control strategy, there is no need to install filters and demodulators in the brightness control device. For the signal analysis module, the parsed message type is a WiFi message signal or a Bluetooth message signal, and it is no longer a carrier signal. Simple structure and precise control.
[0080] In some embodiments of the present invention, an external information collection component is also provided in the electro-hydraulic control system.
[0081] The external information collection component is used to collect environmental information, status information of the target comprehensive security lighting lamp, and personnel positioning information, and generate decision-making adjustment instructions based on the environmental information, the status information of the target comprehensive security lighting lamp and the personnel positioning information, and adjust the generation of the target control signal according to the decision-making adjustment instructions.
[0082] Furthermore, the external information collection components include but are not limited to infrared sensors, low-frequency intensity sensors, personnel positioning collectors, cameras, brightness sensors, etc., to collect information such as light intensity near the controller of the comprehensive security lighting, coal mining machine working information, personnel positioning information, etc., for generating decision-making adjustment instructions.
[0083] As the command issuing end, the electro-hydraulic control system has a built-in control algorithm. It adjusts the brightness of the lamp by sensing the environment, collecting information, making algorithmic decisions, and issuing adjustment commands.
[0084] For example, when it is determined based on the personnel positioning information that the personnel moves from the lighting range of the No. 9 comprehensive security lighting to the lighting range of the No. 3 comprehensive security lighting, and the No. 3 comprehensive security lighting is still not turned on, a decision adjustment instruction is generated to control the No. 9 comprehensive security lighting to turn off and turn on the No. 3 comprehensive security lighting.
[0085] In some embodiments of the present invention, the wireless communication component is also used to resend the target control signal to the target comprehensive protection lighting lamp when the status information of the target comprehensive protection lighting lamp indicates that the target comprehensive protection lighting lamp has not executed the corresponding instruction operation.
[0086] Furthermore, the target control signal is transmitted unidirectionally from the electro-hydraulic control component of the electro-hydraulic control system to the comprehensive protection lighting lamp. The comprehensive protection lighting lamp does not need feedback on the reception and execution of the command. Therefore, a protection method for the execution of the target control command is designed: Method 1: The same target control command is continuously transmitted several times (within 5 times) at a time interval of 100ms to ensure that the communication network is interrupted and packet loss is resolved. Method 2: Use the perception information fed back by the perception system to determine whether the control command has been executed, that is, to generate a decision-making adjustment command. If the command is not executed, reissue the control command.
[0087] The command message corresponding to the target control signal includes two parts, namely the number of the target comprehensive protection lighting lamp and the lighting control instruction.
[0088] The target comprehensive security lighting lamp number can determine the execution object of the message, and can also send a "currently I am in control" message to the controller near the execution object to prevent other controllers from issuing control instructions.
[0089] In some embodiments of the present invention, the electro-hydraulic control system further comprises at least two electro-hydraulic control components, each of which is connected in series via a power supply line; Each electro-hydraulic control component is used to generate the target control signal using the lighting control algorithm, and determine the target electro-hydraulic control component according to the decision adjustment instruction, so as to use the target electro-hydraulic control component to control the target comprehensive protection lighting located within the wireless control distance to perform the corresponding instruction operation. The wireless control distance is determined according to the position information of the target electro-hydraulic control component and the position information of each comprehensive protection lighting.
[0090] It can be understood that the wireless control distance is calculated based on the position information of the target electro-hydraulic control component and the position information of each comprehensive protection lighting lamp.
[0091] For example, the location information of the No. 1 comprehensive security lighting is (1, 50), which means that the No. 1 lighting is located 50 meters from the origin, the location information of the No. 2 comprehensive security lighting is (2, 100), which means that the No. 2 lighting is located 100 meters from the origin, and the location information of the No. 3 comprehensive security lighting is (3, 150), which means that the No. 3 lighting is located 150 meters from the origin. The location information of the target electro-hydraulic control component is the No. 1 electro-hydraulic control component, which is (1, 40), which means that the No. 1 electro-hydraulic control component is located 40 meters from the origin. The wireless control distance between the No. 1 electro-hydraulic control component and the No. 1 comprehensive security lighting, the No. 2 comprehensive security lighting, and the No. 3 comprehensive security lighting can be calculated according to the Pythagorean theorem.
[0092] The circle with the No. 1 electro-hydraulic control component as the center and a radius of 60 meters is the wireless control range corresponding to the wireless control distance. By comparing the calculated wireless control distance with the wireless control range, the comprehensive protection lighting within the wireless control range can be determined, so that the comprehensive protection lighting can be accurately controlled.
[0093] The control method of the comprehensive protection lighting lamp provided by the present invention is described below, and the control method of the comprehensive protection lighting lamp described below and the control device of the comprehensive protection lighting lamp described above can be referred to each other.
[0094] Figure 4 It is a flow chart of a control method of a comprehensive protection lighting provided by the present invention, such as Figure 4 As shown, the method may include but is not limited to steps S100 to S300: S100, generating a target control signal by using the electro-hydraulic control system, and sending the target control signal to the control box through a power supply line; S200, using the control box to perform carrier conversion processing on the target control signal sent by the electro-hydraulic control system, generating a carrier signal, and loading the carrier signal to a power supply line connected in series with the control box; S300, using the comprehensive security lighting lamp to analyze the carrier signal, obtain the signal analysis result, and determine whether the current comprehensive security lighting lamp is the target comprehensive security lighting lamp based on the signal analysis result. When it is determined that the current comprehensive security lighting lamp is the target comprehensive security lighting lamp, execute the instruction operation corresponding to the signal analysis result; and when it is determined that the current comprehensive security lighting lamp is not the target comprehensive security lighting lamp, send the signal analysis result to the next comprehensive security lighting lamp, until the target comprehensive security lighting lamp is determined from the remaining comprehensive security lighting lamps, and control the target comprehensive security lighting lamp to execute the corresponding instruction operation.
[0095] It can be understood that the target control signal is firstly generated by the electro-hydraulic control system.
[0096] When using the wired communication control strategy, the target control signal is sent to the control box through the power supply line, and then the control box is used to perform carrier conversion processing on the target control signal sent by the electro-hydraulic control system to generate a carrier signal, and the carrier signal is loaded into the power supply line connected in series with the control box.
[0097] Finally, the comprehensive security lighting lamp is used to analyze the carrier signal to obtain the signal analysis result, and the signal analysis result is used to determine whether the current comprehensive security lighting lamp is the target comprehensive security lighting lamp. When it is determined that the current comprehensive security lighting lamp is the target comprehensive security lighting lamp, the instruction operation corresponding to the signal analysis result is executed; and when it is determined that the current comprehensive security lighting lamp is not the target comprehensive security lighting lamp, the signal analysis result is sent to the next comprehensive security lighting lamp, until the target comprehensive security lighting lamp is determined from the remaining comprehensive security lighting lamps, and the target comprehensive security lighting lamp is controlled to execute the corresponding instruction operation.
[0098] When the comprehensive protection lighting lamp determines that the current comprehensive protection lighting lamp is not the target comprehensive protection lighting lamp, the signal analysis result is sent to the next comprehensive protection lighting lamp until the target comprehensive protection lighting lamp is determined from the remaining comprehensive protection lighting lamps, and the target comprehensive protection lighting lamp is controlled to execute the corresponding instruction operation.
[0099] Furthermore, each of the comprehensive security lighting lamps includes a lighting lamp, a wired communication instruction receiving component, an instruction parsing component, and an instruction execution component, wherein the wired communication instruction receiving component, the instruction parsing component, and the instruction execution component are connected to the lighting lamp through the power supply line connected in series; the wired communication instruction receiving component includes at least a filter and a demodulator, and the filter and the demodulator are connected through the power supply line; Utilizing the filter and the demodulator of the wired communication command receiving component to extract the carrier signal loaded to the power supply line via the control box, and sending the extracted carrier signal to the command parsing component; Utilizing the instruction parsing component to parse the carrier signal sent by the wired communication instruction receiving component to obtain a signal parsing result, wherein the signal parsing result at least includes the target comprehensive protection lighting lamp number and the lighting lamp control instruction; and determining the target comprehensive protection lighting lamp according to the target comprehensive protection lighting lamp number, and when the target comprehensive protection lighting lamp is determined, sending the corresponding lighting lamp control instruction to the instruction execution component, so that the instruction execution component controls the target comprehensive protection lighting lamp to execute the corresponding instruction operation; Using the instruction execution component to receive the lighting control instruction sent by the wired communication instruction receiving component, and controlling the target comprehensive protection lighting to execute the corresponding instruction operation according to the lighting control instruction; The lighting lamp is used to execute a command operation corresponding to the lighting lamp control command.
[0100] Furthermore, the instruction execution component includes: a switch control component and a brightness adjustment component, and the switch control component and the brightness adjustment component are connected to the lighting lamp through the power supply line connected in series.
[0101] Using the switch control component to control the lighting lamp to perform a turn-on operation or a turn-off operation according to the lighting lamp control instruction; The brightness adjustment component is used to adjust the brightness and / or lighting duration of the lighting lamp according to the lighting lamp control instruction.
[0102] Furthermore, when utilizing the wireless communication control strategy, the target control signal is sent to the target comprehensive protection lighting lamp through the wireless communication component, so that the target comprehensive protection lighting lamp executes the instruction operation corresponding to the target control signal.
[0103] More specifically, the wireless communication instruction receiving component receives the target control signal wirelessly, and sends the target control signal to the instruction parsing component.
[0104] The instruction parsing component is used to parse and process the target control signal sent by the wireless communication instruction receiving component to obtain a wireless signal parsing result, and the wireless signal parsing result is sent to the instruction execution component.
[0105] The instruction execution component is used to receive the wireless signal analysis result sent by the wireless communication instruction receiving component, and the lighting lamp is controlled to execute the corresponding instruction operation according to the wireless signal analysis result.
[0106] The electro-hydraulic control system is also provided with an external information collection component; The external information collection component is used to collect environmental information, status information of the target comprehensive security lighting lamp, and personnel positioning information, and a decision-making adjustment instruction is generated based on the environmental information, the status information of the target comprehensive security lighting lamp and the personnel positioning information, and the generation of the target control signal is adjusted based on the decision-making adjustment instruction.
[0107] When the status information of the target comprehensive protection lighting lamp indicates that the target comprehensive protection lighting lamp has not executed the corresponding instruction operation, the target control signal is resent to the target comprehensive protection lighting lamp by using the wireless communication component.
[0108] The electro-hydraulic control system further comprises at least two electro-hydraulic control components, each of which is connected in series via a power supply line.
[0109] The target control signal is generated by the lighting control algorithm of each electro-hydraulic control component, and the target electro-hydraulic control component is determined according to the decision-making adjustment instruction, so as to utilize the target electro-hydraulic control component to control the target comprehensive protection lighting within the wireless control distance to perform the corresponding instruction operation; wherein, the wireless control distance is determined according to the position information of the target electro-hydraulic control component and the position information of each comprehensive protection lighting.
[0110] In some embodiments of the present invention, at least two comprehensive protection lighting lamps are numbered in series order, and the numbering function is implemented by the control module. The numbering starts from 001 and is connected to the electro-hydraulic control component ( Figure 1 , Figure 3The numbering direction of the controller in the same way as the controller in the controller is increased. Generally, the No. 1 mining lamp and the No. 1 controller are relative to each other, and other mining lamps are deployed at equal intervals. Mining lamps can be numbered manually or automatically. Automatic numbering of mining lamps requires the addition of a signal transmitting and receiving hardware to send and receive signals to the adjacent lamps on the left and right. When a lamp can only receive signals on one side, the lamp will number itself as No. 1, and then pass the information to the adjacent lamps, and finally realize automatic numbering of all lamps.
[0111] Under the wired communication control strategy, by accurately setting the comprehensive protection lighting and the electro-hydraulic control system's electro-hydraulic control components ( Figure 3 The distance and initial position of the controller shown in the figure shall be determined by the electronic and hydraulic control components, and the accuracy of the electro-hydraulic control and execution of the comprehensive protection lighting shall not be less than 99%. Under the wireless communication control strategy, the master and slave devices shall be confirmed based on the position + signal strength of the wireless transmitting and receiving devices, with a position accuracy of not less than 99%, a signal strength envelope recognition accuracy of not less than 95%, and an overall accuracy of not less than 99%.
[0112] The present invention provides a control device and a control method for a comprehensive protection lighting lamp, which utilize an electro-hydraulic control system to generate a target control signal, and send the target control signal to a control box through a power supply line; utilize the control box to perform carrier conversion processing on the target control signal sent by the electro-hydraulic control system, generate a carrier signal, and load the carrier signal to a power supply line connected in series with the control box; utilize the comprehensive protection lighting lamp to analyze the carrier signal, obtain a signal analysis result, and determine whether the current comprehensive protection lighting lamp is a target comprehensive protection lighting lamp according to the signal analysis result, and execute the instruction operation corresponding to the signal analysis result when determining that the current comprehensive protection lighting lamp is a target comprehensive protection lighting lamp. The invention is used to solve the defects of the prior art that the control of the comprehensive protection lighting lamp is not accurate enough and the control function of the comprehensive protection lighting lamp is single, and realize the accurate and flexible control of the comprehensive protection lighting lamp by the electro-hydraulic control system to execute various instruction operations. When a disaster occurs in the mine, the comprehensive protection lighting lamp can play an auxiliary role in avoiding danger, and can strengthen the protection effect on the lighting part of the lamp to prevent slag from impacting the lighting part of the lamp.
[0113] Figure 5 An example of a physical structure diagram of an electronic device is shown in FIG. Figure 5As shown, the electronic device may include: a processor (processor) 510, a communication interface (Communications Interface) 520, a memory (memory) 530 and a communication bus 540, wherein the processor 510, the communication interface 520, and the memory 530 communicate with each other through the communication bus 540. The processor 510 can call the logic instructions in the memory 530 to execute the control method of the comprehensive protection lighting lamp, which includes: using the electro-hydraulic control system to generate a target control signal, and sending the target control signal to the control box through the power supply line; using the control box to perform carrier conversion processing on the target control signal sent by the electro-hydraulic control system to generate a carrier signal, and loading the carrier signal to the power supply line connected in series with the control box; using the comprehensive protection lighting lamp to analyze the carrier signal to obtain a signal analysis result, and judging whether the current comprehensive protection lighting lamp is the target comprehensive protection lighting lamp according to the signal analysis result, and when it is determined that the current comprehensive protection lighting lamp is the target comprehensive protection lighting lamp, executing the instruction operation corresponding to the signal analysis result; and when it is determined that the current comprehensive protection lighting lamp is not the target comprehensive protection lighting lamp, sending the signal analysis result to the next comprehensive protection lighting lamp, until the target comprehensive protection lighting lamp is determined from the remaining comprehensive protection lighting lamps, and controlling the target comprehensive protection lighting lamp to execute the corresponding instruction operation.
[0114] In addition, the logic instructions in the above-mentioned memory 530 can be implemented in the form of a software functional unit and can be stored in a computer-readable storage medium when it is sold or used as an independent product. Based on such an understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art or the part of the technical solution, can be embodied in the form of a software product, and the computer software product is stored in a storage medium, including a number of instructions for a computer device (which can be a personal computer, a server, or a network device, etc.) to perform all or part of the steps of the method described in each embodiment of the present invention. The aforementioned storage medium includes: U disk, mobile hard disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), disk or optical disk, etc. Various media that can store program codes.
[0115] On the other hand, the present invention also provides a computer program product, which includes a computer program, which can be stored on a non-transitory computer-readable storage medium. When the computer program is executed by a processor, the computer can execute the control method of the comprehensive protection lighting provided by the above methods, the method comprising: using an electro-hydraulic control system to generate a target control signal, and sending the target control signal to a control box through a power supply line; using the control box to perform carrier conversion processing on the target control signal sent by the electro-hydraulic control system to generate a carrier signal, and loading the carrier signal to the power supply line connected in series with the control box; using a comprehensive protection lighting lamp to analyze the carrier signal to obtain a signal analysis result, and judging whether the current comprehensive protection lighting lamp is the target comprehensive protection lighting lamp according to the signal analysis result, and executing the instruction operation corresponding to the signal analysis result when it is determined that the current comprehensive protection lighting lamp is the target comprehensive protection lighting lamp; and when it is determined that the current comprehensive protection lighting lamp is not the target comprehensive protection lighting lamp, sending the signal analysis result to the next comprehensive protection lighting lamp, until the target comprehensive protection lighting lamp is determined from the remaining comprehensive protection lighting lamps, and controlling the target comprehensive protection lighting lamp to execute the corresponding instruction operation.
[0116] On the other hand, the present invention also provides a non-transitory computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, is implemented to execute the control method for the comprehensive protection lighting provided by the above-mentioned methods, the method comprising: generating a target control signal by using an electro-hydraulic control system, and sending the target control signal to a control box through a power supply line; performing carrier conversion processing on the target control signal sent by the electro-hydraulic control system by using the control box to generate a carrier signal, and loading the carrier signal to a power supply line connected in series with the control box; parsing the carrier signal by using a comprehensive protection lighting to obtain a signal parsing result, and judging whether the current comprehensive protection lighting is the target comprehensive protection lighting according to the signal parsing result, and executing the instruction operation corresponding to the signal parsing result when judging that the current comprehensive protection lighting is the target comprehensive protection lighting; and sending the signal parsing result to the next comprehensive protection lighting until the target comprehensive protection lighting is determined from the remaining comprehensive protection lighting, and controlling the target comprehensive protection lighting to execute the corresponding instruction operation.
[0117] The device embodiments described above are merely illustrative, wherein the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, they may be located in one place, or they may be distributed on multiple network units. Some or all of the modules may be selected according to actual needs to achieve the purpose of the scheme of this embodiment. Ordinary technicians in this field can understand and implement it without paying creative labor.
[0118] Through the description of the above implementation methods, those skilled in the art can clearly understand that each implementation method can be implemented by means of software plus a necessary general hardware platform, and of course, can also be implemented by hardware. Based on this understanding, the above technical solution is essentially or the part that contributes to the prior art can be embodied in the form of a software product, and the computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, a disk, an optical disk, etc., including a number of instructions for a computer device (which can be a personal computer, a server, or a network device, etc.) to execute the methods described in each embodiment or some parts of the embodiments.
[0119] 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 aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A control device for a comprehensive protection lighting lamp, characterized in that: It comprises an electro-hydraulic control system and at least two comprehensive protection lighting lamps, wherein the electro-hydraulic control system is connected to the at least two comprehensive protection lighting lamps through a series power supply line; the at least two comprehensive protection lighting lamps are connected in sequence; a control box is connected in series at the middle position of the power supply line connecting the electro-hydraulic control system and the at least two comprehensive protection lighting lamps; The electro-hydraulic control system is used to generate a target control signal and send the target control signal to the control box through the power supply line; The control box is used to perform carrier conversion processing on the target control signal sent by the electro-hydraulic control system, generate a carrier signal, and load the carrier signal to a power supply line connected in series with the control box; The comprehensive protection lighting lamp is used to analyze the carrier signal to obtain a signal analysis result, and determine whether the current comprehensive protection lighting lamp is the target comprehensive protection lighting lamp based on the signal analysis result. When it is determined that the current comprehensive protection lighting lamp is the target comprehensive protection lighting lamp, the instruction operation corresponding to the signal analysis result is executed.
2. The control device for the comprehensive protection lighting lamp according to claim 1 is characterized in that: The comprehensive protection lighting lamp is also used to send the signal analysis result to the next comprehensive protection lighting lamp when it is determined that the current comprehensive protection lighting lamp is not the target comprehensive protection lighting lamp, until the target comprehensive protection lighting lamp is determined from the remaining comprehensive protection lighting lamps, and the target comprehensive protection lighting lamp is controlled to execute the corresponding instruction operation.
3. The control device for the comprehensive protection lighting lamp according to claim 1 is characterized in that: Each of the comprehensive security lighting lamps comprises a lighting lamp, a wired communication instruction receiving component, an instruction parsing component, and an instruction execution component, wherein the wired communication instruction receiving component, the instruction parsing component, and the instruction execution component are connected to the lighting lamp through the power supply line connected in series; the wired communication instruction receiving component comprises at least a filter and a demodulator, and the filter and the demodulator are connected through the power supply line; The wired communication instruction receiving component is used to extract the carrier signal loaded into the power supply line via the control box by using the filter and the demodulator, and send the extracted carrier signal to the instruction parsing component; The instruction parsing component is used to parse the carrier signal sent by the wired communication instruction receiving component to obtain a signal parsing result, wherein the signal parsing result at least includes a target comprehensive protection lighting lamp number and a lighting lamp control instruction; And, it is also used to determine the target comprehensive protection lighting lamp according to the target comprehensive protection lighting lamp number, and when the target comprehensive protection lighting lamp is determined, send the corresponding lighting lamp control instruction to the instruction execution component, so that the instruction execution component controls the target comprehensive protection lighting lamp to execute the corresponding instruction operation; The instruction execution component is used to receive the lighting control instruction sent by the wired communication instruction receiving component, and control the target comprehensive protection lighting to execute the corresponding instruction operation according to the lighting control instruction; The lighting lamp is used to execute an instruction operation corresponding to the lighting lamp control instruction.
4. The control device for the comprehensive protection lighting lamp according to claim 3 is characterized in that: The instruction execution component includes: a switch control component and a brightness adjustment component, wherein the switch control component and the brightness adjustment component are connected to the lighting lamp through the power supply line connected in series; The switch control component is used to control the lighting lamp to perform a turn-on operation or a turn-off operation according to the lighting lamp control instruction; A brightness adjustment component is used to adjust the brightness and / or lighting duration of the lighting lamp according to the lighting lamp control instruction.
5. The control device for the comprehensive protection lighting lamp according to claim 4 is characterized in that: A wireless communication component is provided in the electro-hydraulic control system; The wireless communication component is used to send the target control signal to the target comprehensive protection lighting lamp wirelessly, so that the target comprehensive protection lighting lamp executes the instruction operation corresponding to the target control signal.
6. The control device for the comprehensive protection lighting lamp according to claim 5, characterized in that: A wireless communication instruction receiving component is also provided in the comprehensive protection lighting lamp, and the wireless communication instruction receiving component is connected to the instruction parsing component through a power supply line; The wireless communication instruction receiving component is used to receive the target control signal wirelessly and send the target control signal to the instruction parsing component; The instruction parsing component is further used to parse and process the target control signal sent by the wireless communication instruction receiving component to obtain a wireless signal parsing result, and send the wireless signal parsing result to the instruction execution component; The instruction execution component is used to receive the wireless signal analysis result sent by the wireless communication instruction receiving component, and control the lighting lamp to execute corresponding instruction operations according to the wireless signal analysis result.
7. The control device for the comprehensive protection lighting lamp according to claim 6, characterized in that: The electro-hydraulic control system is also provided with an external information collection component; The external information collection component is used to collect environmental information, status information of the target comprehensive security lighting lamp, and personnel positioning information, and generate decision-making adjustment instructions based on the environmental information, the status information of the target comprehensive security lighting lamp and the personnel positioning information, and adjust the generation of the target control signal according to the decision-making adjustment instructions.
8. The control device for the comprehensive protection lighting lamp according to claim 7, characterized in that: The wireless communication component is also used to resend the target control signal to the target comprehensive protection lighting lamp when the status information of the target comprehensive protection lighting lamp indicates that the target comprehensive protection lighting lamp has not executed the corresponding instruction operation.
9. The control device for the comprehensive protection lighting lamp according to claim 7, characterized in that: The electro-hydraulic control system further comprises at least two electro-hydraulic control components, each of which is connected in series via a power supply line; Each electro-hydraulic control component is used to generate the target control signal using a lighting control algorithm, and determine the target electro-hydraulic control component according to the decision-making and adjustment instructions, so as to use the target electro-hydraulic control component to control the target comprehensive protection lighting within the wireless control distance to perform corresponding instruction operations; wherein the wireless control distance is determined based on the position information of the target electro-hydraulic control component and the position information of each comprehensive protection lighting.
10. A method for controlling a comprehensive protection lighting lamp applied to the control device for a comprehensive protection lighting lamp according to any one of claims 1 to 9, characterized in that: The control device of the comprehensive protection lighting lamp comprises an electro-hydraulic control system and at least two comprehensive protection lighting lamps, wherein the electro-hydraulic control system is connected to the at least two comprehensive protection lighting lamps through a series power supply line; the at least two comprehensive protection lighting lamps are connected in sequence; a control box is connected in series at the middle position of the power supply line connecting the electro-hydraulic control system and the at least two comprehensive protection lighting lamps; generating a target control signal by using the electro-hydraulic control system, and sending the target control signal to the control box through the power supply line; Using the control box to perform carrier conversion processing on the target control signal sent by the electro-hydraulic control system to generate a carrier signal, and loading the carrier signal to a power supply line connected in series with the control box; Utilize the comprehensive protection lighting lamp to analyze the carrier signal to obtain a signal analysis result, and determine whether the current comprehensive protection lighting lamp is the target comprehensive protection lighting lamp according to the signal analysis result, and if it is determined that the current comprehensive protection lighting lamp is the target comprehensive protection lighting lamp, execute the instruction operation corresponding to the signal analysis result; And when it is determined that the current comprehensive protection lamp is not the target comprehensive protection lamp, the signal analysis result is sent to the next comprehensive protection lamp, until the target comprehensive protection lamp is determined from the remaining comprehensive protection lamps, and the target comprehensive protection lamp is controlled to execute the corresponding instruction operation.