风力发电系统的电压稳定控制

A. Rahim, M. Alam, I. Amin, M. A. Abido, Z. Al-Hamouz, C. Bel-Hadj, M. Kassas
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引用次数: 3

摘要

电压不稳定是风电大规模并网的主要原因。对于基于感应发电机的风力发电系统,当系统出现阵风、故障等瞬态扰动时,位于发电机末端的固定电容无法正常满足无功需求。本文提出了两种提高并网风力发电系统电压稳定性的方案。通过SVC实现可变电纳控制,通过静态补偿器系统(STATCOM)实现无功补偿。仿真结果表明,这两种方案都能很好地提供电压稳定性和抑制合理扰动水平下的暂态。然而,由于其快速响应能力以及独立于系统电压支持提供补偿的能力,STATCOM表现出了卓越的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Voltage stability control of a wind generation system
Voltage instability is the main cause of concern for the large scale integration of wind power into the power grid. For the induction generator based wind generation system, the fixed capacitor located at the generator terminal can not normally cater for the reactive power demand during the transient disturbances like wind gusts and faults on the system. This paper presents two schemes for enhancing voltage stability of grid connected wind generator system. These are: variable susceptance control thru SVC and reactive power compensation through static compensator system (STATCOM). Simulation results show that both schemes are well capable of providing voltage stability and damping transient arising from reasonable level of disturbances. The STATCOM, however, demonstrates superior performance because of its fast response capability as well as its ability to provide compensation independent of system voltage support.
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