Enhance Power System Transient Voltage Stability by Difference Coefficient of Generator Excitation System Optimization

Author:

Sun Wen1,Su Yin Sheng2,Zhang Jun Feng1,Li Xiao Ming3

Affiliation:

1. Guangdong Power Grid Corporation

2. Power Dispatching Control Center, CSG

3. Northeast Dianli University

Abstract

Lack of dynamic reactive power compensation result in power system transient voltage instability. To improve the transient voltage stability, an optimization strategy for setting the excitation system difference coefficient of the generator is presented in this paper. The concept of the excitation system difference coefficient is introduced. Then the impacts of difference coefficients of generator excitation system on generator stability are analyzed and adjustment range is proposed. The calculation results of Guangdong province system show that the transient voltage stability level is enhanced effectively after optimizing the excitation system difference coefficient.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference12 articles.

1. Jun QIU and Caihao LIANG . Proceedings of the CSU-EPSA, 2004, 16(2): 69-72. 2013, 37(23) . (In Chinese).

2. Zhiheng LI , Hongjun FU and Jianhua SUN , et al. Automation of Electric Power Systems, 2011, 35(9): 95-99. (In Chinese).

3. DAVIES J B, MIDFORD L E. High side voltage control at manitoba hydro [C]. Proceedings of 2000 IEEE Power Engineering Society Summer Meeting: Vol 1, July 16-20, 2000, Seattle, WA, USA: 271-277.

4. GB/T 7409. 3—2007 Excitation system for synchronous electrical machines-Technical requirements of excitation system for large and medium synchronous generators [S]. (2007).

5. Jun AN , Gang MU and Taiyi ZHENG , et al. Automation of Electric Power Systems, 2013, 37(23): 97-101. (In Chinese).

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