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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.
Centralized monitoring
The system collects real-time operational data and provides warnings and alarms for abnormal equipment data using various communication methods. Historical data is stored for viewing to ensure the safe operation of the new energy automation system.
Production and O&M
The system provides real-time monitoring of device alarms and defects, enabling complete closed-loop processing of alarms. It performs statistical analysis of the alarms to guide subsequent work, eliminating safety hazards in the production and operation processes and preventing accidents.
Intelligent diagnosis
The system performs intelligent diagnosis of the O&M process of the new energy automation system through intelligent data collection and digital analysis. It quickly detects power generation anomalies and generates monthly diagnostic reports, which are regularly sent to users.
Optical power prediction system
The system accurately predicts power generation and output capacity based on refined weather forecasting services and a combination of intelligent algorithms. This guides power dispatching and real-time control, minimizing operating costs and risks.
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.
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.
The JOYO plant-station integrated automation system can achieve power monitoring for substations at 500kV and below, and independently complete protection and control for substations at 110kV and below. The system integrates functions such as monitoring, control, measurement, waveform recording, relay protection, safety automation devices, communication, and remote control into a unified system. It realizes vertical coverage of scheduling, centralized control, and substation automation systems, and integrates power monitoring, safety management and control, and auxiliary control into one comprehensive monitoring solution, providing an intelligent, economical, and comprehensive automation solution for the power system.
The JOYO-F/K dispatching and centralized control automation system is used for centralized monitoring of substations in large and medium-sized petrochemical, refining, and other industrial enterprises. It focuses on electrical automation monitoring and control, achieving applications such as electrical data acquisition, remote control, anti-misoperation locking, operation ticket management, and video surveillance. This ensures reliable power supply for precision equipment and a large number of medium- and low-voltage motors, ensuring stable operation of power supply lines, transformers, switches, and secondary equipment, and enhancing the intelligence and informatization of the power supply system for industrial enterprises. The system adopts advanced cross-platform technology and a distributed architecture, meeting the high reliability and safety requirements of power systems. The unified development platform and integrated diagram model technology support the latest one-click sequence control and secondary equipment monitoring technologies, ensuring reliable operation of electrical equipment and fast operations, reducing the workload for electrical maintenance personnel.
Traditional disconnector operations face challenges such as complex procedures, low operational efficiency, and high risks of misoperation, making them unable to meet the demands of lean substation management and the digitalization of power grids. The JOYO-A1 one-click sequence control system for substations is built on integrated substation monitoring and intelligent anti-misoperation technologies, combining magnetic sensing, micro-motor control, and secondary anti-misoperation technologies. It creates a new generation of one-click sequence control system with "comprehensive state awareness, full remote control of equipment, comprehensive anti-misoperation verification, and full coverage of operations," providing intelligent, efficient, and safe substation operation solutions for customers in the power grid, power plants, and petrochemical industries.
The UT-Z300B intelligent substation integrated automation system is a next-generation solution that integrates monitoring, control, protection, measurement, anti-misoperation, and telemetry functions. It is developed based on cloud computing, IoT, mobile intelligence, intelligent sensing technologies, and big data, with unified standards, a unified platform, optimized configuration, and enhanced security, all while adhering to an open design philosophy. The system follows a top-down design philosophy, adopting a layered, distributed structure while adhering to grid technology specifications. It optimizes secondary circuits, reduces the workload of commissioning and maintenance, and makes substation operations more economical, reliable, and intelligent. The system can be applied to both intelligent substations and conventional substations.