Transient Stability Impact of Short Circuit Fault System Based on SVC And PSS Applications

Authors

  • Xinyue Gao
  • Xuanzhe Liu
  • Dapeng Zhang

DOI:

https://doi.org/10.54097/hset.v71i.12696

Keywords:

Static VAR compensator; Power system stabilizer; Transient stability; MATLAB; Ground fault.

Abstract

Researchers are currently focusing on two solutions, namely Static VAR compensator (SVC) and power system stabilizer (PSS), to address different power system stability issues in large area interconnected power grids. To enhance transient stability, researchers have suggested a combined approach involving SVC and PSS. In this method, SVC and PSS coordinate and cooperate with each other to provide better stability assurance. To verify the feasibility of this method, simulation experiments were conducted using MATLAB. Simulated the situation of single-phase ground fault, two-phase ground fault, and three-phase ground fault in the power system, and tested the effectiveness of SVC and PSS respectively. The simulation results show that the combined use of SVC and PSS can significantly improve the transient stability of power systems and effectively reduce the impact of faults on the system. In summary, the combined use of SVC and PSS can effectively solve various power system stability issues that may arise in large-scale interconnected power grids. By conducting simulation experiments in MATLAB, researchers have verified the feasibility of this method under different fault conditions, providing strong support for practical applications.

Downloads

Download data is not yet available.

References

Deng Cong, Zheng Siyuan, Lin Yuexin, “Research on Transient Stability of Power Systems Based on SVC and PSS”, The Straits Publishing&Distribution Group, 2018:7

Li Qipeng. Application of SVC in reactive power compensation of wind turbines in the new energy era [J]. Modern Industrial Economy and Information Technology, 2022, 12 (12): 142-143+146.

Xu Hui. “Optimal control strategy for auxiliary PSS of energy storage device in power system.” Southwest Jiaotong University, 2019.

Li Cheng, Zhang Da, Fang N. “Research on the Experimental Application of Power System Stabilizers”. Jiangxi Electric Power, 2018,42 (12): 40-43.

Liu Bo. “Research on the application of power system stabilizer to suppress low-frequency oscillation”. Xi'an Polytechnic University, 2018.

Cui Ting, Hu Guoli, Guo Hu, etc. “Reactive voltage support capability and disposal scheme of 500 kV grid connected Static VAR compensator”. Hunan Electric Power, 2021,41 (04): 18-22.

Zhang Chenghan. “Application research of dynamic reactive power compensation device (SVC) in coal mine power supply system”. Mechanical Management Development, 2020,35 (07): 156-157+182.

Gao L, Cheng L, Zhang C et al. “Multi-objective cooperative economic dispatch considering SVC and energy storage access to the grid”. Hunan Electric Power,2021,41(02):1-8+14.

ZHANG Huijun, LONG Lianqiang, GUO Bin et al. “A case study of excitation PSS reactive power inversion based on MATLAB simulation”, China Electric Power Technology Market Association. 2022 Proceedings of the Electric Power Industry Technical Supervision Work Exchange Meeting and Professional Technical Forum, 2022:6.

Chen X,Li A,Yang F et al. “Research on voltage stability of power system based on SVC and PSS”. Electronic Design Engineering, 2017,25(09):18-21.

Downloads

Published

28-11-2023

How to Cite

Gao, X., Liu, X., & Zhang, D. (2023). Transient Stability Impact of Short Circuit Fault System Based on SVC And PSS Applications. Highlights in Science, Engineering and Technology, 71, 194-209. https://doi.org/10.54097/hset.v71i.12696