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Reactance Scan Crossover-Based Approach for Investigating SSCI Concerns for DFIG-Based Wind Turbines

机译:基于电抗扫描交叉的方法研究基于DFIG的风力发电机组的SSCI问题

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This paper presents a reactance crossover-based technique to investigate subsynchronous control interaction (SSCI) concerns associated with doubly fed induction generator-based wind generation resources. A theoretical discussion serving as the mathematical premise for the proposed approach is presented. The driving point reactance, as seen from the WGR, across the subsynchronous frequency range is determined using four different approaches. Specifically, two of the four methods (Methods 3 and 4) are unique in terms of the approach utilized for performing frequency scans. System-side frequency scans are augmented with turbine-side frequency scans. A dynamic frequency-scanning method for the turbine side is developed which takes the turbine nonlinearities and its active behavior into account. The presence of crossover points in the reactance scans, as obtained from four approaches, in conjunction with the turbine-side frequency scans is utilized to draw conclusions on potential SSCI concerns. A portion of the Electric Reliability Council of Texas grid model has been utilized for the case study. The observations/inferences drawn via the reactance scans are corroborated via electromagnetic transients simulations.
机译:本文提出了一种基于电抗交叉的技术,以研究与基于双馈感应发电机的风力发电资源相关的次同步控制相互作用(SSCI)问题。提出了理论讨论,为提出的方法提供了数学前提。从WGR中可以看出,使用四种不同的方法确定了跨次同步频率范围内的驱动点电抗。具体而言,就用于执行频率扫描的方法而言,四种方法中的两种(方法3和4)是唯一的。系统侧的频率扫描通过涡轮机侧的频率扫描得到增强。开发了一种针对涡轮机侧的动态频率扫描方法,该方法考虑了涡轮机的非线性及其主动特性。从四种方法获得的电抗扫描中交叉点的存在,结合汽轮机侧的频率扫描,可用于得出关于潜在SSCI问题的结论。案例研究使用了德克萨斯州电力可靠性委员会网格模型的一部分。通过电抗扫描得出的观察结果/推论通过电磁瞬态仿真得到了证实。

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