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Voltage Dip Induced Frequency Events in Wind Integrated Power Systems

机译:风力发电系统中电压降引起的频率事件

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Many power systems around the world are experiencing increased wind generation capacity, with different penetration targets set at national, and/or regional level. Wind power integration, especially at large scale, introduces various grid issues, with frequency and voltage stability being particularly critical concerns. The research work presented here investigates voltage dip induced frequency stability in large-scale wind integrated power systems: a potential risk that has received limited attention by the research community. With state of the art modelling, the potential impact of delayed active power recovery from wind generation following a network fault induced voltage dip is investigated. Fault induced voltage oscillations introduced by wind turbines, exacerbating frequency instability, are also examined. The impact of a voltage dip induced instantaneous power imbalance on system frequency stability is investigated for a wide range of wind penetration levels, with the results demonstrated on the New England benchmark system.
机译:全世界许多电力系统的风力发电能力都有所提高,在国家和/或地区级别设定了不同的渗透目标。风力发电的集成,特别是大规模的集成,引入了各种电网问题,其中频率和电压稳定性是特别关键的问题。此处提出的研究工作调查了大型风力集成电力系统中电压骤降引起的频率稳定性:这种潜在风险受到研究界的有限关注。利用最先进的建模技术,研究了网络故障引起的电压骤降后,风力发电延迟恢复有功功率的潜在影响。还检查了风力涡轮机引入的故障感应电压振荡,加剧了频率不稳定性。研究了电压骤降引起的瞬时功率不平衡对大范围的风渗透水平对系统频率稳定性的影响,结果在新英格兰基准系统上得到了证明。

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