Remote intelligent operation power box control equipment

By remotely and intelligently operating the power box control equipment and integrating IoT sensors and control systems, problems such as usage control, equipment push, and safety protection of the maintenance power box are solved, remote monitoring and intelligent recommendation of the power box are realized, and maintenance efficiency and safety are improved.

CN223414637UActive Publication Date: 2025-10-03CHINA YANGTZE POWER
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Patent Information

Application Number
CN202422767964.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-10-03
Estimated Expiration
2034-11-13

AI Technical Summary

Technical Problem

The existing maintenance power boxes have not been effectively managed in terms of usage and maintenance time control. The products are single and cannot push appropriate equipment according to the task. The autonomous and remote control are weak, the power supply cannot be cut off in time, and the maintenance workload is heavy.

Method used

A remote intelligent operation power box control device is designed, which integrates the remote control management system, the Internet of Things data acquisition and control part, the fault detection part and the UPS power module. It is equipped with voltage, current, arc, temperature and humidity sensors and smoke sensors. It uses the Internet of Things technology to achieve real-time monitoring, intelligent recommendation, multi-level management and multi-level protection, and supports remote operation and local control.

Benefits of technology

It realizes remote real-time monitoring and operation of power boxes, intelligently recommends suitable equipment, provides multi-level protection, reduces on-site hazards, optimizes resource allocation, improves maintenance efficiency, reduces human errors, and ensures the stability and reliability of the power system.

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Abstract

A remote intelligent operation power box control device comprises a remote control management system, an Internet of Things data acquisition control part, a fault detection part and a UPS power supply module which are arranged in a power box. The remote control management system comprises a communication module, and the communication module is connected and communicated with the server side; the Internet of Things data acquisition control part comprises a control module, the control module is connected with an industrial control screen, the industrial control screen is connected with a communication module, and a control switch and arc extinguishing equipment in the power box are connected with the control module; according to the utility model, the remote control of the power supply cabinet is realized, the maintenance personnel are allowed to carry out accurate control at any place, and the danger of field operation is obviously reduced.
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Description

Technical Field

[0001] The utility model relates to remote intelligent operation power box control equipment. Background Art

[0002] A maintenance power box is a temporary power supply device used for temporary power supply, maintenance, or overhaul operations. It integrates multiple components, including short-circuit protection, concealed industrial sockets, and leakage current micro-interrupters, to provide reliable, safe, and stable power for on-site operations. With the advancement of science and technology, maintenance power boxes have achieved breakthroughs in safety, convenience, durability, and intelligence.

[0003] The combination of IoT technology and advanced algorithms not only enhances the data collection and processing capabilities of maintenance power boxes, but also significantly improves operator safety. In the maintenance and operation management of the power industry, intelligent maintenance power boxes are widely used for equipment maintenance fault prevention, location, and repair. The implementation of these intelligent maintenance power boxes has improved the efficiency of troubleshooting and resolution for maintenance personnel. By digitally recording the entire process of fault discovery, location, and resolution, they have significantly promoted the sustainable development and technological advancement of the energy industry.

[0004] The existing maintenance power box integrates many Internet of Things technologies, which has greatly improved the convenience of safety management, but there are still some key issues that have not been properly addressed.

[0005] 1. The maintenance power box has not been effectively managed and monitored in terms of application and maintenance time control;

[0006] 2. The existing maintenance power box products are single, and the system cannot push normal and suitable ones for the maintenance task to maintenance personnel based on the maintenance task and site.

[0007] 3. The autonomous and remote control environment of the maintenance power box is weak, and the power supply cannot be cut off in time in the event of an emergency.

[0008] 4. The power box itself is an electronic product, which requires regular maintenance by maintenance personnel, increasing the workload. Utility Model Content

[0009] The purpose of the utility model is to provide a remote intelligent operation power box control device for solving the problem of remote control of the power cabinet, allowing maintenance personnel to perform precise control at any location, and significantly reducing the risk of on-site operations.

[0010] In order to solve the above problems, the technical solution of the utility model is:

[0011] A remote intelligent operation power box control device, comprising a remote control management system, an Internet of Things data acquisition and control part, a fault detection part, and a UPS power supply module arranged in the power box;

[0012] The remote control management system includes a communication module, which is connected to the server for communication;

[0013] The Internet of Things data acquisition and control part includes a control module, the control module is connected to the industrial control screen, the industrial control screen is connected to the communication module, and the control switch and arc extinguishing equipment in the power box are connected to the control module;

[0014] The fault detection part includes a voltage sensor, a current sensor, an arc sensor and a temperature and humidity sensor connected to the power box loop, and the voltage sensor, current sensor, arc sensor and temperature and humidity sensor are connected to the control module;

[0015] The UPS power module is connected to the fault detection part, the Internet of Things data acquisition and control part and the remote control management system.

[0016] The power box is equipped with an electromagnetic lock, which is connected to the control module.

[0017] A smoke sensor is provided in the power box and is connected to the control module.

[0018] The communication module is a lora point-to-point communication module.

[0019] The beneficial effects of the utility model are:

[0020] 1. Real-time monitoring: This solves the problem of not being able to understand the power box's operating status in real time. Using IoT technology, not only can key parameters such as voltage, current, power, temperature, and humidity be acquired remotely and in real time, but even when the power box under maintenance is not working, the system can perform scheduled self-tests to monitor the status of the power box in real time. This enables remote monitoring and operation of the power box.

[0021] 2. Intelligent recommendation: We design and manufacture various types of power boxes. The remote control system integrates intelligent algorithms to decompose the approval document information and intelligently push the appropriate maintenance power cabinet according to the maintenance address and maintenance-related equipment information.

[0022] 3. Multi-level control: IoT technology is used to monitor maintenance tasks at multiple stages, including when they are initiated, in progress, and completed, to sense dangers in advance and protect life and property.

[0023] 4. Optimize resource allocation: Based on the breakdown of historical maintenance tasks, the system recommends the appropriate output power interfaces to improve power utilization efficiency. Based on the breakdown and recommendations of historical maintenance tasks, the system recommends the appropriate equipment and interfaces for the current maintenance task based on the maintenance area, maintenance equipment information, and power interface information. This allows maintenance personnel to quickly determine the power cabinets and interfaces required for the task and reduce energy consumption based on the recommendations.

[0024] 5. Improve maintenance efficiency: By storing historical maintenance tasks through IoT technology, the system processes and decomposes these tasks, collects fault information, and regularly updates recommended strategies, achieving autonomous learning. The next time a similar task is matched, the system prioritizes the power supply box and power output interface suitable for the task. The system also simultaneously outputs historical maintenance task information to help maintenance personnel quickly locate the problem.

[0025] 6. Multi-level protection: The processing system provides multi-level protection for personnel through the setting of security strategies. In addition to remote control and local control, the system can set detection strategies for current, voltage, temperature, arc, etc., and set maximum and minimum value security strategies. The power box can perform reminders, power off, disable and other operations according to the security strategy to maintain the safety of maintenance personnel.

[0026] This patent applies Internet of Things technology to achieve remote control of the power cabinet, which not only enables continuous monitoring of the operating status of the power cabinet, but also allows maintenance personnel to perform precise control at any location, significantly reducing the danger of on-site operations and the occurrence of human errors, thereby improving the efficiency of maintenance work and ensuring the stability and reliability of the power system. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] The present invention will be further described below with reference to the accompanying drawings:

[0028] Figure 1 It is a structural diagram of the present utility model.

[0029] In the figure: power box 1, communication module 2, control module 3, fault detection part 4, UPS power module 5, server end 6, smoke sensor 7, industrial control screen 8, electromagnetic lock 9. DETAILED DESCRIPTION

[0030] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only 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 making creative efforts are within the scope of protection of the present invention.

[0031] like Figure 1As shown, a remote intelligent operation power box control device includes a remote control management system arranged in a power box 1, an Internet of Things data acquisition and control part, a fault detection part 4 and a UPS power module 5;

[0032] The remote control management system includes a communication module 2, which is connected to the server 6 for communication;

[0033] The Internet of Things data acquisition and control part includes a control module 3, the control module 3 is connected to the industrial control screen 8, the industrial control screen 8 is connected to the communication module 2, and the control switch and arc extinguishing device in the power box 1 are connected to the control module 3 to realize the collection and switch control of the control switch, arc extinguishing device, door magnetic lock, temperature and humidity data in the power box 1; the operation data of the industrial control screen 8 is collected and the data is screened for validity and then input into the fault detection part 4, the fault detection part 4 screens the operation data according to the preset value synchronized by the server side 6. If the operation data is within the rules, the operation is allowed and the data is stored. If the data exceeds the preset rules, it is uploaded to the server side 6 through the lora point-to-point communication module 2 to request authorization from the remote administrator. If not authorized, the operation is refused and the reason is fed back to the operating user.

[0034] The fault detection unit 4 includes a voltage sensor, a current sensor, an arc sensor, and a temperature and humidity sensor connected to the loop of the power box 1. The voltage sensor, current sensor, arc sensor, and temperature and humidity sensor are connected to the control module 3. When the value at the loop connection end is abnormal, the signal is transmitted to the control module 3, and a safety operation is performed. The abnormal signal is then wirelessly transmitted to the server-side 6 console via the LoRa communication module 2 through the control module 3, thereby realizing wireless intelligent fault detection for the power distribution equipment, sensing danger in advance, and reminding maintenance personnel to repair the equipment in a timely manner.

[0035] The UPS power module 5 is connected to the fault detection unit 4, the IoT data acquisition and control unit, and the remote control and management system. The UPS power module 5 has a built-in charging and discharging module. When the power box 1 is connected to an external power source, the UPS power module 5 automatically charges. If the power box 1 loses power, the UPS power module 5 automatically discharges to ensure power to the IoT data acquisition and control unit, the fault detection unit 4, the LoRa communication module 2, the temperature and humidity sensor, and the lighting. The UPS power module 5 is interconnected with the fault detection unit 4. The fault detection unit 4 periodically performs a voltage-converting power supply test on the power supply loop according to detection rules set by the remote server, collects and stores the test data. If the power supply test is abnormal, an alarm message is uploaded via the LoRa communication module 2, the power box 1 status changes to abnormal, and maintenance personnel are notified to perform repairs. If the data is normal, the power box 1 is in normal operation and usable condition.

[0036] The power box 1 is equipped with an electromagnetic lock 9, which is connected to the control module 3. After the construction personnel arrive at the site, the electromagnetic lock 9 is opened to allow the construction personnel to start work after the remote staff confirms the construction personnel's information. The maintenance power box 1 is connected to the production management system, and a complete process is formed for the application, approval, and on-site use of the designated maintenance power box 1. This strictly controls the users and usage time to reduce the occurrence of safety accidents.

[0037] A smoke sensor 7 is provided in the power box 1 and is connected to the control module 3. The smoke sensor 7 is used to detect whether the equipment in the power box 1 is burning, thereby improving the safety of the device when in use.

[0038] The communication module 2 is a lora point-to-point communication module 2. It ensures the reliability of communication.

[0039] The contents described in the embodiments of this specification are merely an enumeration of the implementation forms of the utility model concept. The protection scope of the utility model should not be regarded as limited to the specific forms described in the embodiments. The protection scope of the utility model also extends to equivalent technical means that can be thought of by those skilled in the art based on the concept of the utility model.

Claims

1. A remote intelligent operation power box control device, characterized by: It includes a remote control management system, an Internet of Things data acquisition control part, a fault detection part (4) and a UPS power supply module (5) arranged in a power box (1); The remote control management system comprises a communication module (2), the communication module (2) being connected to the server (6) for communication; The Internet of Things data acquisition control part includes a control module (3), the control module (3) is connected to the industrial control screen (8), the industrial control screen (8) is connected to the communication module (2), and the control switch and arc extinguishing equipment in the power box (1) are connected to the control module (3); The fault detection part (4) includes a voltage sensor, a current sensor, an arc sensor and a temperature and humidity sensor connected to the loop of the power box (1), and the voltage sensor, current sensor, arc sensor and temperature and humidity sensor are connected to the control module (3); The UPS power supply module (5) is connected to the fault detection part (4), the Internet of Things data acquisition and control part, and the remote control and management system.

2. The remote intelligent operation power box control device according to claim 1, characterized in that: The power box (1) is equipped with an electromagnetic lock (9), and the electromagnetic lock (9) is connected to the control module (3).

3. The remote intelligent operation power box control device according to claim 1, characterized in that: A smoke sensor (7) is provided in the power supply box (1), and the smoke sensor (7) is connected to the control module (3).

4. The remote intelligent operation power box control device according to claim 1, characterized in that: The communication module (2) is a lora point-to-point communication module (2).