Research of Real-Time Monitoring and Control Technology for Distributed Energy Storage Based on 5G


연구 분야: Infrastructure



학회: 2022 IEEE/IAS Industrial and Commercial Power System Asia (I&CPS Asia)


초록

Under the guidance of the "double carbon" goal, China energy system is undergoing profound changes. The development of new energy storage is an important way to improve the flexibility of China power system, build a new power system and ensure the realization of the "double carbon" goal on schedule. The "Virtual Power Plant" technology can realize the aggregation and optimization of energy storage devices, realize the multi energy complementarity on the power side, promote the flexible interaction on the load side, and provide a new operation scheme for building a security, economic, efficient and reliable power grid. However, at the same time, the massive distributed loads typical of the new energy storage are distributed everywhere. How to realize the real-time, security and reliable monitoring and control has become an important problem affecting the wide application of the new energy storage technology. Focusing on the real-time, security and reliable monitoring and control of the distributed energy storage loads, this paper proposes a real-time monitoring and control technology for distributed energy storage based on 5G to ensure the security and reduce the time delay of application data interaction. It provides a feasible and effective solution for the main station of power system to realize real-time load control and meet the needs of peak cutting and valley filling.


Author Profile
Siliang Suo

Information Security Center China Southern Power Grid Research Institute Co. Ltd. Guangzhou China

China
Author Profile
Liming Chen

Information Security Center China Southern Power Grid Research Institute Co. Ltd. Guangzhou China

China
Author Profile
Renli Cheng

Power Dispatching Center Shenzhen Power Supply Co. Ltd. Shenzhen China

China

📄 논문 정보

발행 연도 2022년
인용수 3
출판 국가 China
사이트 IEEE
좋아요 수 0

연관 논문 목록 (124건)