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Aging of power equipment joints and contacts can cause heating, which reduces insulation performance and, if not intervened in a timely manner, may lead to fires or other accidents.
Traditional temperature measurement methods, due to frequent battery changes, limited measurement range, and unsafe wired power supply, increase the burden on maintenance and are difficult to meet the needs of refined management.
Manual inspection and monitoring involve heavy workloads and low efficiency, relying on personal experience, making it difficult to monitor in real time, which may lead to missing or delayed troubleshooting.
Traditional temperature measurement cannot perform online measurement, automatic recording, or remote transmission, lacking real-time monitoring and management capabilities, which impacts equipment maintenance and fault response.
The online temperature monitoring system for power equipment integrates cutting-edge technologies such as CT power induction, IoT, and edge computing to record the temperature of power equipment and its heat-prone components in real-time, enabling comprehensive temperature monitoring and analysis. The system has intelligent analysis and diagnosis functions, issuing warnings before accidents occur and alarms when equipment temperature is abnormal, significantly improving the safety and reliability of power equipment operation.
Online temperature monitoring
The system monitors data from equipment temperature points in real-time through digital displays, temperature curves, and infrared images.
Intelligent warning management
Users can set alarm thresholds according to actual conditions. An alarm is triggered when the temperature, phase-to-phase, or same-phase temperature difference reaches a preset level.
Historical data management
Collected temperature data and alarm records are saved to a historical database in real-time and can be queried by time, type, or equipment.
Mobile monitoring application
The system allows access via mobile devices, offering the same functionality as the PC client, breaking time and space constraints, and enabling real-time monitoring and querying of equipment temperature anytime, anywhere.
The auxiliary equipment monitoring system, based on technologies such as IoT, big data, intelligent sensing, artificial intelligence, and 3D modeling, integrates and standardizes the resources of various isolated and scattered auxiliary control subsystems. This achieves optimized system resource allocation, information sharing, and seamless business integration between systems, addressing the complexities of substation auxiliary equipment, scattered operational information, and lack of coordination. It enhances the intelligent O&M of substations and supports the construction of new power systems.
With intelligent analysis and 3D visualization, the system provides innovative technical support for the safe and stable operation of infrastructure in sectors like power grids and petrochemicals, driving substation, distribution station, and transmission line operations toward intelligence and unmanned management. Through intelligent analysis and 3D visualization, the system provides innovative technical support for the safe and stable operation of critical infrastructure in industries such as power grids and petrochemicals. It drives key areas, including substations, distribution stations, and transmission lines, toward intelligent and unmanned operations.
The intelligent auxiliary monitoring system focuses on precise management of auxiliary equipment, and uses IoT, AI, and big data analysis to achieve real-time monitoring of equipment data and in-depth diagnostic analysis. The system provides deep insight into the status of auxiliary equipment, including fire monitoring, safety protection, power environment, and online monitoring subsystems. By remotely controlling and managing equipment, it enhances fault prediction and preventive decision-making capabilities, achieving intelligent O&M and reducing personnel pressure while improving efficiency and safety.
refined remote supervision can be achieved, enabling remote maintenance and enhancing substation O&M management levels.
The intelligent warehouse management solution focuses on controlling tools and equipment , access control, video surveillance, and environmental factors within the safety tools and equipment warehouse.
The system is designed to efficiently integrate the scattered auxiliary equipment subsystems in substations, addressing the issues of diverse equipment types, dispersed information, and isolated systems. The system includes a service gateway machine, a comprehensive application host, and front-end intelligent sensors. It features multiple functions such as online monitoring, safety protection, and dynamic environment monitoring, supporting a three-tier system architecture for substations, O&M teams, and centralized control stations. The system's application provides strong support for the digital transformation of power grid enterprises and the construction of new power systems.