Optimal Excitation Control System of Synchronous Generator in Big Disturbance Based on Improved LOEC Mode

Author:

Li Zi Сheng1,Yuan Bao Shan2

Affiliation:

1. Chengdu University of Technology

2. Southwestern Institute of Physics, Chengdu 610041, China

Abstract

Linear optimal excitation control (LOEC) mode takes the power system as multiple control target, it has better dynamic performance and adaptability in the vicinity of the equilibrium point. But when the disturbance is too large, the system performance will be deteriorated, meantime controlling lack the terminal voltage control. This paper presents the optimal excitation controller which has a wide excitation control system adapting to a wide range disturbance. The choice of variables is changed based on the variables used in the excitation control of exact linearization. The speed deviation differential is used to replace the electromagnetic power deviation in commonly optimal excitation control system, and the terminal voltage control is added. The improved excitation control system adaptability is enhanced. The simulation results show that the improved excitation controller has a wider adjustment range, anti-disturbance and strong characteristics.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference9 articles.

1. HUANG Xiaofeng. PID application in the generator excitation control system. Electric Engineering, vol. 9(2007), pp.79-80.

2. FENG Weijiang, CHEN Heng. Parameter optimization and performance comparison of power system stabilizer and strong excitation regulator[J]. Automation of Electric Power Systens, vol. 14(1990), pp.22-28.

3. RAY P S, DUTTAGUPTA P B, BHAKTA P. Coordinated multi-machine PSS design using both speed and electric power [J]. IEE Proceedings of Generation Transmission and Distribution. vol. 142(1995), pp.503-510.

4. Yu. Y. N, Yongsiuriya K, Wedman L N. Application of optimal control theory to a power system, IEEE Trans on PAS, vol. 89(1970), pp.55-52.

5. Andersen J H. The control of synchronous machine using optimal control theory[J]. IEEE Trans On Power Apparatus and Systems, vol. 99(1971), pp.25-35.

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