Voltage compensation for wind integration in power systems

M. Dicorato, G. Forte, M. Trovato
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引用次数: 9

Abstract

The fast growth of wind generation leads to concern about its effects on electric grid. The wind power integration needs to be ruled by specific voltage and frequency requirements. As concerns voltage support, wind farm are called to guarantee a reactive power regulation range at point of common coupling (PCC). Moreover, in the presence of voltage dips or fault conditions, wind generators should be able to respect low-voltage ride-through curves to contribute to grid regulation and avoid sudden unbalances. In this paper, different control strategies of wind farm are evaluated, in order to comply with grid code requirements for voltage support. In particular, reactive power and voltage regulation is carried out through generator power factor variation and by static compensation devices as SVCs. Simulations are performed on a wind farm connected to IEEE 14-Buses test system in the presence of grid fault condition.
电力系统中风力集成的电压补偿
风力发电的快速发展引起了人们对其对电网影响的担忧。风电并网需要按照特定的电压和频率要求进行治理。在电压支持方面,风电场需要保证在共耦合点(PCC)的无功调节范围。此外,在电压下降或故障情况下,风力发电机应该能够尊重低压穿越曲线,以有助于电网调节,避免突然不平衡。本文对风电场的不同控制策略进行了评估,以满足电网规范对电压支持的要求。特别是,无功功率和电压调节是通过发电机功率因数变化和静态补偿装置(SVCs)来实现的。在电网故障情况下,对连接IEEE 14- bus测试系统的风电场进行了仿真。
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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