COMPREHENSIVE RESEARCH ON HYBRID ENERGY STORAGE STRATEGIES OF PARK MICROGRIDS WITH OPTICAL STORAGE AND DC MICROGRIDS

Authors

  • Lu Tianqi State Grid Liaoning Electric Power CO, LTD., Power Electric Research Institute, Shenyang 110015, China
  • Jing, Li Fang State Grid Liaoning Electric Power CO, LTD., Power Electric Research Institute, Shenyang 110015, China
  • Yang Guochen State Grid Liaoning Electric Power CO, LTD., Power Electric Research Institute, Shenyang 110015, China
  • Sun Mingze State Grid Liaoning Electric Power CO, LTD., Power Electric Research Institute, Shenyang 110015, China

Keywords:

Comprehensive research, hybrid energy, fault location, time domain method, DC microgrids

Abstract

The multi-circuit coupling transmission mode is an inevitable trend of power grid construction, mainly with partially coupled multi-circuit lines. Affected by the local coupling between lines, the existing fault location methods have large errors. To this end, fault analysis and fault location methods are carried out on partially coupled double-circuit transmission lines. According to the structure and characteristics of the partially coupled double-circuit transmission line on the same tower, the voltage and current interface equations at the coupling demarcation point of the partially coupled double-circuit transmission line are established using line decoupling theory. On this basis, a time-domain analysis model of fault location for each coupling section is constructed, and a time-domain method for fault location of partially coupled double-circuit transmission lines is proposed. Finally, the electromagnetic transient simulation software is used to construct a partially coupled double-circuit transmission line model on the same tower, and a comprehensive simulation verification is performed. The results show that the proposed method has high accuracy

Published

2023-09-29

How to Cite

Lu , T., Jing, L. F., Yang, G., & Mingze, S. (2023). COMPREHENSIVE RESEARCH ON HYBRID ENERGY STORAGE STRATEGIES OF PARK MICROGRIDS WITH OPTICAL STORAGE AND DC MICROGRIDS. Interdisciplinary Journal of Engineering and Environmental Sciences, 9(3), 17–21. Retrieved from https://sadijournals.org/index.php/ijees/article/view/498