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Transient Stability Analysis for Offshore Wind Power Plant Integration Planning Studies—Part II: Long-Term Faults

机译:海上风电场整合规划研究的暂态稳定性分析—第二部分:长期故障

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This paper addresses the transient stability (also called large-signal stability) analysis of power systems for offshore wind power plant integration planning studies. In particular, this study develops a comprehensive practical methodology to assess the transient stability of power systems, including rotor angle stability, voltage stability, and frequency response for large-scale power systems. This methodology considers variability of the offshore wind power plants as well as the type of any faulted system's components present and is applicable to the study of both short-term and long-term faults. Part I of this research discussed the short-term faults, whereas Part II, the present paper, discusses long-term faults. This research considers the integration of offshore wind power plants into existing power systems and demonstrates the utility of this methodology through the examination of the specific case of integrating 1000 MW of offshore wind power into the FirstEnergy/PJM service territory using a realistic model of 63 k-bus test system that represents the U.S. Eastern Interconnection.
机译:本文介绍了用于海上风电厂集成规划研究的电力系统的暂态稳定性(也称为大信号稳定性)分析。尤其是,本研究开发了一种综合的实用方法来评估电力系统的瞬态稳定性,包括大型电力系统的转子角稳定性,电压稳定性和频率响应。该方法论考虑了海上风力发电厂的可变性以及存在的任何故障系统组件的类型,并且适用于短期和长期故障的研究。本研究的第一部分讨论了短期故障,而本论文的第二部分则讨论了长期故障。这项研究考虑了将海上风力发电厂整合到现有电力系统中的问题,并通过使用63 k的实际模型检查将1000兆瓦的海上风力发电整合到FirstEnergy / PJM服务区域的具体案例,证明了该方法的实用性-bus测试系统代表了美国东部互连。

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