Power System Oscillation Damping Capability of Doubly Fed Induction Generator (DFIG)

Niroj Gurung, S. Kamalasadan
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引用次数: 2

Abstract

The increasing amount of wind power generation essentially replaces the conventional synchronous generators of the power system, thereby, reducing the total inertia of the system. Reduced inertia of the system is expected to hamper the system response during contingencies. It is clear that small signal as well as transient rotor angle stability is be affected by the changing dynamics of the power grid. This paper focuses on the impact of increasing DFIG penetration and techniques to overcome the stability issues using DFIG control. The technique of using modified Rotor Side Converter (RSC) control and Grid Side Converter (GSC) control with a supplementary control loop and their capability to damp the power system oscillation have been investigated using modal analysis and non-linear time-domain analysis. The results are evaluated on Kundur two area four machine test system.
双馈感应发电机(DFIG)的电力系统减振性能
风力发电量的增加基本上取代了电力系统的传统同步发电机,从而减少了系统的总惯性。预计系统惯性的降低将妨碍系统在突发事件期间的响应。可见,电网动态的变化不仅会影响转子暂态角的稳定性,而且会影响小信号的稳定性。本文重点讨论了DFIG突防增加的影响以及利用DFIG控制克服稳定性问题的技术。利用模态分析和非线性时域分析,研究了转子侧变换器(RSC)和电网侧变换器(GSC)加辅助控制环的改进控制技术及其对电力系统振荡的抑制作用。在昆都尔二区四机试验系统上对试验结果进行了评价。
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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