Mechanism of impact of governor control on power system dynamics and introduction of boundary frequency

Tao Xiang-yu, Wang Guanhong, Li Wenfeng, Liu Zenghuang, Zhao Hongguang, Chu Liu
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引用次数: 5

Abstract

This paper presents an investigation on the mechanism of the impact of the governor control on power system dynamics, and an introduction of boundary frequency. The well-known Hefferon-Phllips math model has been extended to include the math model of the turbine and its governor. By using this model the impact can be divided into the synchronizing and the damping torques. Based on the analysis of the frequency response, a new concept of the boundary frequency has been drawn out and that provides a performance index in characterizing the nature of the turbine and its governor in system dynamics. The damping provided by governor will be opposite in polarity, if the oscillation frequencies are located in different sides of the boundary frequency. This study also provides the values of the boundary frequencies for thermal and hydro generators under different control input signals ΔΩ or ΔPE. Study has also been conducted for input signals ΔΩ and ΔPE.
调速器控制对电力系统动力学的影响机理及边界频率的引入
本文研究了调速器控制对电力系统动力学影响的机理,并引入了边界频率。著名的hefferon - phillips数学模型已经扩展到包括涡轮机及其调速器的数学模型。利用该模型可将冲击力矩分为同步力矩和阻尼力矩两部分。在分析频率响应的基础上,提出了边界频率的新概念,该概念在系统动力学中提供了表征水轮机及其调速器性质的性能指标。如果振荡频率位于边界频率的两侧,则调速器提供的阻尼极性相反。本研究还提供了不同控制输入信号ΔΩ或ΔPE下的热电发电机和水轮发电机边界频率值。对输入信号ΔΩ和ΔPE也进行了研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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