有效的系统参数选择,防止电压振荡不稳定

Bahman Khaki, B. Mozafari
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引用次数: 2

摘要

本文阐述了电力系统控制器(AVR、PSS、FACT等)的合理调整对电力系统稳定性的影响。该分析基于分岔理论、小信号稳定性评估和时域仿真。提出了一种新的有效方法,通过在系统控制器的合理范围内采用适当的参数值来增加电压稳定裕度并克服振荡不稳定性。考虑并比较了SVC和TCSC器件对系统性能的影响。首先,对不含FACT器件的测试系统的稳定性进行了研究。然后,对包括SVC和TCSC在内的系统进行了静态和动态分析,并采用了最优放置算法。通过多参数分岔分析,研究了系统参数对Hopf和鞍节点分岔的影响,得到了防止系统电压振荡不稳定的最佳控制器参数值。
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Efficient system parameter selection to prevent oscillatory voltage instability
In this paper the effects of suitable adjustment of power system controllers including AVR, PSS, and FACT devices on the stability of power system are illustrated. The analysis is base on bifurcation theory, small signal stability evaluation and time domain simulations. A new and efficient procedure is proposed to increase voltage stability margin and to overcome oscillatory instability by adopting appropriate parameter values within plausible range for the system controllers. Effect of SVC and TCSC devices on system performance are considered and compared in detail. At first, the stability of the test system without FACT devices is investigated. Then, static and dynamic analyses are repeated for the system including SVC and TCSC devices, with optimal placement algorithms . multi-parameter bifurcation analysis is presented to study the effect of system parameters on the Hopf and saddle node bifurcations, and to achieve the best controller parameters values to prevent oscillatory voltage instability in the system .
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