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Traditional monitoring and detection methods have limitations, making it difficult to obtain real-time equipment status and fault information
High-voltage equipment carries safety risks such as electric shocks and short circuits, requiring necessary protective measures
With the development of power systems, the demand for intelligence in booster stations has increased to improve operational efficiency and reduce the risks of manual operations
Traditional O&M rely on manual inspections, resulting in low efficiency and high costs, lacking simple and efficient O&M control methods
The 110kV booster station utilizes advanced technologies such as switchgear and protection devices, remote monitoring and automation control, data analysis, and intelligent decision-making to enhance power transmission efficiency, improve power system reliability, reduce maintenance costs, and realize system intelligence. These technologies and measures improve the stability, economy, and sustainability of the power system, providing important value for power system and economic development.
Support for new energy integration
In addition to conventional protection devices, there are also anti-islanding, reverse power, fault decoupling devices used for grid-connected booster stations in photovoltaic power plants
High system reliability
The various devices equipped in the booster station can detect and isolate faults in a timely manner, ensuring the safe operation of the power system and improving reliability
Intelligent system equipment
The system achieves intelligent operation by adopting remote monitoring and automation control, as well as data analysis and intelligent decision-making. This optimizes energy scheduling and improves energy utilization efficiency
Visualized equipment information
Real-time monitoring of equipment operating conditions enables panoramic supervision of the booster station on the system monitoring cloud platform, significantly enhancing the station's overall management and monitoring capabilities
The new energy automation monitoring system is mainly used for solar photovoltaic power plants, addressing the challenges of widely distributed data acquisition devices and difficulties in unified supervision. The system utilizes the latest information technologies such as big data, cloud computing, and artificial intelligence to collect, store, and analyze photovoltaic power plant data. Coupled with powerful edge computing capabilities and robust national security certification, the system improves operational efficiency, stability, and security, reduces maintenance costs, optimizes resource allocation, and promotes the sustainable development of the new energy industry.
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.
In view of the content and risks of each operation stage in power generation enterprises, and with the goal of ensuring the safety of personnel, equipment, and the operation process, the system adopts a "technical defense + human defense + material defense" management approach. By integrating digital technology with power plant operation management, it enables measurable, visible, predictable, and controllable operations. This approach comprehensively manages operational risks, improves efficiency, and supports the construction of intrinsically safe intelligent power plants.
With data integration and business collaboration as the main focus, the distributed photovoltaic comprehensive monitoring system enables holistic and intelligent O&M management of photovoltaic power generation systems. It plays a crucial role in ensuring safety, improving efficiency, facilitating emergency response, reducing costs, and promoting green energy savings in the O&M of new energy power generation systems. The system provides extensive data support and decision-making assistance for the production and management of new energy enterprises.
Focusing on industrial safety and intelligence, we provide products and services for industries such as electric power, petrochemical, metallurgy, coal, and rail transportation.