4G networking remote control working condition alarm lamp
By integrating multimodal perception, intelligent decision-making, multi-dimensional warning, remote communication, composite power supply, and hierarchical access control, the system solves the problems of insufficient perception, poor scenario adaptability, and weak remote control of power facility protection equipment, achieving efficient and reliable power facility protection and operation and maintenance, and reducing risks and costs.
Patent Information
- Application Number
- CN202511505384.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-21
- Publication Date
- 2026-01-23
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing power facility protection equipment suffers from limited sensing methods, insufficient identification accuracy, fixed warning modes, poor scenario adaptability, weak remote control, low power supply reliability, and lack of access management, resulting in protection failure, high operation and maintenance costs, and high costs for accident repair.
By integrating multimodal sensing units, intelligent decision and control units, multi-dimensional warning output units, remote communication and networking units, composite energy power supply units, and hierarchical management and operation and maintenance units, the system can achieve accurate identification, dynamic warning, real-time control, reliable power supply, and standardized operation and maintenance of power facilities.
It improves the accuracy of power facility protection, scenario adaptability, real-time remote control, and endurance reliability in extreme environments, reduces external damage risks and operation and maintenance costs, and helps the digital and intelligent upgrade of power safety management.
Smart Images

Figure CN121397508A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of power facility safety protection technology, specifically a 4G network-connected remote control alarm light for operating conditions. Background Technology
[0002] In the field of power facility safety protection, alarm devices are a key technical means to prevent external damage (such as unauthorized entry, animal attacks, and construction misoperations). Among them, the working condition alarm light, as the core terminal of scenario-based protection, specifically refers to intelligent devices that are adapted to the needs of specific work scenarios and can realize risk warnings, safety alerts, or abnormal indications through sound, light, data interaction, etc. Its core lies in providing targeted perception, warning, and control functions according to the characteristics of different work environments to ensure the safety of personnel, equipment, or facilities within the scenario.
[0003] However, most of the alarm devices currently on the market for the protection of power facilities fail to fully reflect the core positioning of "scenario adaptation and precise protection" of working condition alarm lights, and generally have the following technical limitations:
[0004] The perception method is singular and the recognition accuracy is insufficient: most of them use single radar or infrared sensors, which can only monitor targets in a single dimension and lack environmental analysis assistance, making them prone to protection failure due to misjudgment or omission.
[0005] The warning mode is fixed and has poor scene adaptability: the functions of lights, voice and drive away work independently and cannot be dynamically combined according to the scene, making it difficult to meet the differentiated needs of different scenes such as transmission towers, substations and distribution boxes in busy urban areas.
[0006] Weak remote control and high maintenance costs: The lack of stable network communication capabilities means that parameter adjustment and status monitoring require manual on-site operation, which is especially problematic for power facilities in remote areas, resulting in low maintenance efficiency and high labor costs.
[0007] Low power supply reliability and poor adaptability to extreme environments: Relying on a single solar or lithium battery for power supply, it is prone to shutdown due to insufficient power in extreme weather conditions such as rain, snow, or continuous cloudy days, resulting in protection interruption;
[0008] Lack of access control and insufficient operational standardization: The lack of differentiation in the operation permissions of different roles such as installation, operation and maintenance, and supervision can easily lead to confusion of equipment parameters due to misoperation, thus affecting the protection effect.
[0009] Based on this, the present invention provides a 4G network-connected remote control alarm light to solve the above-mentioned technical problems. Summary of the Invention
[0010] The purpose of this invention is to provide a 4G network-connected remote control alarm light. This invention integrates six major units: multimodal perception, intelligent decision-making, multi-dimensional warning, remote communication, composite power supply, and hierarchical access control. It achieves accuracy in identifying moving targets in the protection of power facilities, scenario adaptability of warning strategies, real-time remote control, endurance reliability in extreme environments, and standardization of equipment operation and maintenance. It effectively reduces the risk of external damage to power facilities, the cost of manual operation and maintenance, and the cost of accident repair, and helps to upgrade the digital and intelligent management of power safety.
[0011] To achieve the above objectives, the present invention provides the following technical solution:
[0012] This invention provides a 4G network-connected remote control alarm light, comprising a multimodal sensing unit, an intelligent decision and control unit, a multi-dimensional warning output unit, a remote communication and networking unit, a composite energy supply unit, and a hierarchical access control and maintenance unit, wherein:
[0013] The multimodal sensing unit is used to sense and identify moving targets and environmental conditions within a 0.5-10 meter range around the alarm light in real time through sensor fusion technology that uses radar and sound data.
[0014] The intelligent decision and control unit is used to autonomously trigger alarm responses or respond to remote commands based on preset operating conditions and sensing information, and coordinate and control alarm output, ultrasonic drive-away and data upload operations.
[0015] The multi-dimensional warning output unit is used to output a combination of visual, audible and ultrasonic warning signals through programmable LED lights, voice broadcasts and ultrasonic transmitters.
[0016] The remote communication and networking unit is used to transmit data in real time, configure remote parameters, monitor device status, and perform over-the-air upgrades with the backend platform via a 4G / 5G network.
[0017] The composite energy power supply unit is used to form a multi-source power supply architecture through solar energy, wind energy, lithium batteries and Type-C charging;
[0018] The permission-based hierarchical management and operation and maintenance unit is used to standardize the deployment, remote operation and maintenance, data traceability and full life cycle management of equipment through the separation of operation permissions between installers and supervisors.
[0019] The multimodal sensing unit includes a horizontal radar and a vertical radar. The horizontal radar is used to monitor moving targets within 0.5-10 meters on the ground; the vertical radar is used to monitor moving targets within 0.5-10 meters in the air; and the sound acquisition is used for environmental analysis to assist in identifying target types and environmental characteristics.
[0020] The preset operating modes in the intelligent decision-making and control unit include autonomous sensing mode, remote control mode, timed alarm mode, and loop recording mode.
[0021] The autonomous sensing mode is used to automatically trigger an adapted warning strategy based on the sensed target and environmental information; the remote control mode is used to trigger customized warnings in response to instructions from the back-end platform; the timed warning mode is used to regularly trigger low-power warnings according to a preset cycle; and the loop recording mode is used to continuously record and collect evidence in high-risk accident areas.
[0022] The multi-dimensional warning output unit includes an LED light module, an audio playback module, and an ultrasonic transmission module.
[0023] The LED light module is used to output red, blue, alternating red and blue, and parallel red and blue flashing modes, and can automatically increase the flashing brightness in rainy or snowy weather; the audio playback module is used to match and play preset audio such as "High Voltage Danger, Do Not Approach," "Eagle Cry," and "Dog Bark" according to the working condition mode, as well as custom audio, with a maximum volume of 11 levels, and can automatically turn off the audio output in rainy or snowy weather; the ultrasonic transmitting module is used to transmit sound waves with a frequency band of 1-16kHz, supporting single-frequency / Chirp modulation, to non-harmfully repel birds, rats, and snakes.
[0024] The remote communication and networking unit includes a 4G / 5G communication module and a data synchronization module.
[0025] The 4G / 5G communication module is used to establish a connection with the mini-program and web-based backend platform via the mobile network; the data synchronization module is used to support data synchronization with the MQTT platform and the iGuowang system, and to perform remote status queries, parameter configurations, and online upgrades.
[0026] In the composite energy power supply unit, solar energy is used to convert light energy into electrical energy through solar panels on sunny days; wind energy is used to supplement electrical energy through wind turbines when there is sufficient wind; the lithium battery is used to store electrical energy and automatically switches to become the main power supply in severe weather conditions such as rain, snow, or insufficient sunlight / wind; and the Type-C charging is used to quickly charge the device via wired connection in emergency situations.
[0027] In the permission-based hierarchical management and operation and maintenance unit, installation personnel are limited to device binding, operating mode selection, installation location information entry, and installation testing; while supervisors can view device power, alarm count, and location information, remotely switch operating modes, adjust audio and visual parameters, enable recording functions, and support batch device parameter configuration, program upgrades, and device classification management by city / region.
[0028] Compared with the prior art, the beneficial effects of the present invention are:
[0029] This invention achieves the accuracy of moving target identification, scenario adaptability of warning strategies, real-time remote control, endurance reliability in extreme environments, and standardization of equipment operation and maintenance in the protection of power facilities through the collaborative integration of six major units: multimodal perception, intelligent decision-making, multi-dimensional warning, remote communication, composite power supply, and hierarchical access control. It effectively reduces the risk of external damage to power facilities, the cost of manual operation and maintenance, and the cost of accident repair, and helps to upgrade the digital and intelligent management of power safety. Attached Figure Description
[0030] Figure 1 This is a system diagram of a 4G network-connected remote control alarm light according to the present invention.
[0031] Figure 2 This is a schematic diagram of the on-site protection range and linkage in a 4G network remote control alarm light according to the present invention.
[0032] Figure 3 This is a diagram of an alarm light device for remotely controlling a working condition alarm light via 4G network, according to the present invention.
[0033] Explanation of icon numbers:
[0034] 100. Multimodal sensing unit; 200. Intelligent decision-making and control unit; 300. Multi-dimensional warning output unit; 301. LED lighting module; 302. Audio playback module; 303. Ultrasonic transmission module; 400. Remote communication and networking unit; 401. 4G / 5G communication module; 402. Data synchronization module; 500. Composite energy supply unit; 600. Hierarchical access control and maintenance unit. Detailed Implementation
[0035] The technical solutions of the present invention will be clearly and completely described below with reference to the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0036] Example:
[0037] like Figures 1-3As shown, this embodiment provides a 4G network-connected remote control alarm light, including a multimodal sensing unit 100, an intelligent decision and control unit 200, a multi-dimensional warning output unit 300, a remote communication and networking unit 400, a composite energy power supply unit 500, and a hierarchical access control and maintenance unit 600. The multimodal sensing unit 100 uses sensor fusion technology combining radar and sound to perceive and identify moving targets and environmental conditions within a 0.5-10 meter range around the alarm light in real time. The intelligent decision and control unit 200 autonomously triggers alarm responses based on preset operating conditions and perceived information, or responds to remote commands to coordinate and control warning output, ultrasonic deterrence, and data transmission. Upload operation; Multi-dimensional warning output unit 300: used to output combined visual, audible and ultrasonic alarm signals through programmable LED lights, voice broadcast and ultrasonic transmitter; Remote communication and networking unit 400: used for real-time data transmission, remote parameter configuration, equipment status monitoring and over-the-air upgrades with the back-end platform through 4G / 5G network; Composite energy power supply unit 500: used to form a multi-source power supply architecture through solar energy, wind energy, lithium battery and Type-C charging; Hierarchical permission management and operation and maintenance unit 600: used to standardize the deployment, remote operation and maintenance, data traceability and full life cycle management of equipment through the separation of operation permissions of installation personnel and supervisors.
[0038] It should be noted that the multimodal sensing unit 100 transmits the collected environmental data to the intelligent decision and control unit 200. The latter coordinates the multi-dimensional warning output unit 300 to issue accurate alarms according to the preset strategy, and interacts with the platform through the remote communication and networking unit 400. The entire system is continuously powered by the composite energy power supply unit 500, and the hierarchical management and operation and maintenance unit 600 realizes full life cycle security control and operation and maintenance.
[0039] In this embodiment, it should also be noted that the radar in the multimodal sensing unit 100 includes a horizontal radar and a vertical radar. The horizontal radar is used to monitor moving targets within 0.5-10 meters on the ground; the vertical radar is used to monitor moving targets within 0.5-10 meters in the air; and the sound acquisition is used for environmental analysis to assist in identifying target types and environmental characteristics.
[0040] It should be noted that the horizontal radar scans along the horizontal direction of the ground, accurately capturing ground moving targets within a range of 0.5-10 meters, such as pedestrians, vehicles, snakes, and rodents. The vertical radar detects along the vertical direction, covering an airborne range of 0.5-10 meters, focusing on identifying aerial moving targets such as birds and drones. Sound acquisition utilizes environmental acoustic analysis (such as construction noise and animal calls) to assist in determining target type and environmental characteristics (such as the sound of rain on rainy or snowy days), improving recognition accuracy. Sound acquisition employs a high-sensitivity microphone with a pickup range of 5-20 meters and a sampling rate of 44.1kHz.
[0041] In this embodiment, it should also be noted that the preset operating modes in the intelligent decision and control unit 200 include autonomous sensing mode, remote control mode, timed warning mode, and loop recording mode. The autonomous sensing mode is used to automatically trigger an adapted warning strategy based on the perceived target and environmental information; the remote control mode is used to trigger customized warnings in response to instructions from the background platform; the timed warning mode is used to regularly trigger low-power warnings according to a preset cycle; and the loop recording mode is used to continuously record and collect evidence in high-risk accident areas.
[0042] It should be noted that the operating mode switching response time is ≤0.5 seconds, and it supports the simultaneous storage of preset parameters for 8 operating modes. Autonomous Sensing Mode: In bird control scenarios on transmission towers, when birds are detected approaching, a combined warning of "red and blue flashing lights + eagle call audio + ultrasonic waves" is automatically triggered; in rainy or snowy weather, the light brightness is automatically increased and the audio is turned off (as rain weakens the audio effect). Remote Control Mode: Suitable for temporary protection in construction areas, supervisors can send commands via the web interface, and the device immediately switches to "red flashing lights + 'Construction area, be careful' voice," until construction is completed and remotely turned off. Timed Warning Mode: In urban distribution box scenarios, the device triggers "blue slow flashing lights + 'High voltage danger, do not approach' voice" at preset intervals (e.g., every 30 minutes), serving as a warning while avoiding energy waste due to continuous operation. Loop Recording Mode: In accident-prone areas (such as fiber optic cable areas prone to human damage), the device continuously records and stores audio without triggering the warning function, providing evidence for later investigation.
[0043] In this embodiment, it should also be noted that the multi-dimensional warning output unit 300 includes an LED light module 301, an audio playback module 302, and an ultrasonic transmitting module 303. The LED light module 301 is used to output red, blue, alternating red and blue, and parallel red and blue flashing modes, and can automatically increase the flashing brightness in rainy or snowy weather; the audio playback module 302 is used to match and play preset audio such as "High Voltage Danger, Do Not Approach," "Eagle Cry," and "Dog Bark" according to the working condition mode, as well as custom audio, with a maximum volume of 11 levels, and can automatically turn off the audio output in rainy or snowy weather; the ultrasonic transmitting module 303 is used to emit sound waves with a frequency band of 1-16kHz, supporting single-frequency / Chirp modulation, to non-harmfully repel birds, rats, and snakes.
[0044] It should be noted that the LED lighting module 301 uses high-brightness surface-mount LEDs with a red light wavelength of 620-630nm, a blue light wavelength of 460-470nm, a strobe frequency of 10-20Hz, and automatically increases brightness to 500cd / m² in rainy or snowy weather. 2 (300 cd / m³ under normal conditions) 2The audio playback module 302 uses a Class D amplifier with a frequency response range of 20Hz-20kHz and 11 volume levels corresponding to 30-120 dB (level 1: 30dB, level 11: 120dB). It supports custom audio uploads in MP3 format (maximum file size 10MB). The ultrasonic transmitting module 303 uses a piezoelectric ceramic transducer with an output power of 5W. In single-frequency mode, the frequency error is ±0.5kHz, and in Chirp modulation mode, the frequency change rate is 1kHz / ms.
[0045] In this embodiment, it should also be noted that the remote communication and networking unit 400 includes a 4G / 5G communication module 401 and a data synchronization module 402. The 4G / 5G communication module 401 is used to establish a connection with the mini-program and the web-based backend platform via the mobile network; the data synchronization module 402 is used to support data synchronization with the MQTT platform and the iGuowang system, and to perform remote status queries, parameter configurations, and online upgrades.
[0046] It should be noted that the 4G / 5G communication module 401 supports TD-LTE / FDD-LTE / 5G NR standards, with a maximum downlink speed of 150Mbps, a maximum uplink speed of 50Mbps, and an operating temperature range of -30℃ to +70℃ (suitable for outdoor environments). The data synchronization module 402 supports the MQTT v3.1.1 protocol, with a configurable data upload period (1-60 seconds), an over-the-air upgrade rate of ≥1Mbps, and supports resume download.
[0047] In this embodiment, it should also be noted that the solar energy in the composite energy power supply unit 500 is used to convert light energy into electrical energy through solar panels on sunny days; the wind energy is used to supplement electrical energy through wind turbines when there is sufficient wind; the lithium battery is used to store electrical energy and automatically switches to become the main power supply in severe weather conditions such as rain or snow when there is insufficient sunlight / wind; and the Type-C charging is used to quickly charge the device via wired connection in emergency situations.
[0048] It should be noted that the solar panel is made of monocrystalline silicon with a conversion efficiency of 22-24%, a size of 300×200mm, and a maximum output power of 10W; the wind turbine is a small vertical axis wind turbine with a starting wind speed ≥3m / s, a rated power of 5W, and an output voltage of 5V; the lithium battery is a 3.7V 3000mAh lithium polymer battery with a cycle life of ≥500 cycles, an operating temperature of -20℃ to +60℃, and can maintain continuous operation for more than 72 hours in rain and snow; the Type-C charging interface supports 5V / 2A input and can charge to 80% in 2 hours for emergency charging.
[0049] In this embodiment, it should also be noted that the installation personnel in the hierarchical management and maintenance unit 600 are limited to device binding, operating mode selection, installation location information entry, and installation testing; the supervisory personnel can view the device power, alarm count, and location information, remotely switch operating modes, adjust sound and light parameters, enable recording function, and support batch device parameter configuration, program upgrade, and device classification management by city / region.
[0050] It should be noted that the installation personnel have the following permissions: After logging into the mini-program, they can only select the operating mode (such as "bird deterrence on transmission towers" or "animal prevention in substations"), enter the installation location (latitude and longitude) and on-site photos, and perform installation tests (such as triggering an audible and visual alarm). After the operation, the interface is locked and cannot be modified again. Supervisory personnel have the following permissions: They can view data of all network devices (including real-time location, battery level, daily alarm count, and operating mode type) via the web interface, remotely switch modes (such as changing from "timed alarm" to "autonomous sensing"), adjust audible and visual parameters (such as light frequency and volume level), and enable recording. It also supports batch configuration of device parameters by city / region and initiation of program upgrades for centralized management.
[0051] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the invention. In this specification, illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0052] The preferred embodiments of the present invention disclosed above are merely illustrative of the invention. These preferred embodiments do not exhaustively describe all details, nor do they limit the invention to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of the invention, thereby enabling those skilled in the art to better understand and utilize the invention. The invention is limited only by the claims and their full scope and equivalents.
Claims
1. A 4G network-connected remote control alarm light, characterized in that, It includes a multimodal sensing unit (100), an intelligent decision-making and control unit (200), a multi-dimensional warning output unit (300), a remote communication and networking unit (400), a composite energy power supply unit (500), and a hierarchical access control and maintenance unit (600), wherein: The multimodal sensing unit (100) is used to sense and identify moving targets and environmental conditions within a range of 0.5-10 meters around the alarm light in real time through sensor fusion technology that collects radar and sound data. The intelligent decision and control unit (200) is used to autonomously trigger alarm responses or respond to remote commands based on preset operating conditions and sensing information, and coordinate and control alarm output, ultrasonic drive-away and data upload operations. The multi-dimensional warning output unit (300) is used to output a combined alarm signal in the form of visual, audible and ultrasonic signals through programmable LED lights, voice broadcast and ultrasonic transmitter. The remote communication and networking unit (400) is used for real-time data transmission, remote parameter configuration, equipment status monitoring and over-the-air upgrades with the back-end platform via a 4G / 5G network. The composite energy power supply unit (500) is used to form a multi-source power supply architecture through solar energy, wind energy, lithium batteries and Type-C charging; The permission-based hierarchical management and operation and maintenance unit (600) is used to perform standardized deployment, remote operation and maintenance, data traceability and full life cycle management of equipment through the separation of operation permissions between installers and supervisors.
2. The 4G network-connected remote control alarm light according to claim 1, characterized in that, The multimodal sensing unit (100) includes a horizontal radar and a vertical radar. The horizontal radar is used to monitor moving targets within 0.5-10 meters on the ground; the vertical radar is used to monitor moving targets within 0.5-10 meters in the air; and the sound acquisition is used for environmental analysis to assist in identifying target types and environmental characteristics.
3. The 4G network-connected remote control alarm light according to claim 1, characterized in that, The preset operating modes in the intelligent decision and control unit (200) include autonomous sensing mode, remote control mode, timed alarm mode, and loop recording mode.
4. The 4G network-connected remote control alarm light according to claim 3, characterized in that, The autonomous sensing mode is used to automatically trigger an adapted warning strategy based on the sensed target and environmental information; the remote control mode is used to trigger customized warnings in response to instructions from the back-end platform; the timed warning mode is used to regularly trigger low-power warnings according to a preset cycle; and the loop recording mode is used to continuously record and collect evidence in high-risk accident areas.
5. The 4G network-connected remote control alarm light according to claim 1, characterized in that, The multi-dimensional warning output unit (300) includes an LED light module (301), an audio playback module (302), and an ultrasonic wave transmission module (303).
6. The 4G network-connected remote control alarm light according to claim 5, characterized in that, The LED light module (301) is used to output red, blue, red and blue alternating, and red and blue parallel flashing modes, and can automatically increase the flashing brightness in rainy or snowy weather; the audio playback module (302) is used to match and play preset audio such as "High voltage danger, do not approach", "eagle cry" and "dog bark" according to the working condition mode, as well as custom audio, with a maximum volume of 11 levels, and can automatically turn off the audio output in rainy or snowy weather; the ultrasonic transmitting module (303) is used to transmit sound waves with a frequency band of 1-16kHz, supporting single-frequency / Chirp modulation, to non-harmfully repel birds, rats and snakes.
7. The 4G network-connected remote control alarm light according to claim 1, characterized in that, The remote communication and networking unit (400) includes a 4G / 5G communication module (401) and a data synchronization module (402).
8. A 4G network-connected remote control alarm light according to claim 7, characterized in that, The 4G / 5G communication module (401) is used to establish a connection with the mini-program and the Web backend platform through the mobile network; the data synchronization module (402) is used to support data synchronization of the MQTT platform and the iGuowang system, and to perform remote status query, parameter configuration and online upgrade.
9. A 4G network-connected remote control alarm light according to claim 1, characterized in that, In the composite energy power supply unit (500), solar energy is used to convert light energy into electrical energy through solar panels on sunny days; wind energy is used to supplement electrical energy through wind turbines when there is sufficient wind; the lithium battery is used to store electrical energy and automatically switches to the main power supply in severe weather conditions such as rain or snow when there is insufficient sunlight / wind; and the Type-C charging is used to quickly charge the device via wired connection in emergency situations.
10. A 4G network-connected remote control alarm light according to claim 1, characterized in that, In the permission-based hierarchical management and operation and maintenance unit (600), the installation personnel are limited to device binding, operating mode selection, installation location information entry, and installation testing; the supervisory personnel can view device power, alarm count, location information, remotely switch operating modes, adjust sound and light parameters, enable recording function, and support batch device parameter configuration, program upgrade, and device classification management by city / region.