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Dynamic VAr Planning in a Large Power System Using Trajectory Sensitivities

机译:利用轨迹灵敏度在大型电力系统中进行动态VAr规划

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This paper presents the results of an investigation of a voltage collapse case in a heavily stressed, large power system. The study is focused on examining the impact of a fault at the bulk transmission level in the system during summer peak load conditions. The power system under study has significant amount of air conditioning load. The power system components modeled in detail include both static and dynamic loads at key distribution feeders, over excitation limiters, switchable shunts, STATCOM, and static VAr compensators. The impact of induction motors on voltage stability is studied with the focus on trajectory sensitivity. The concept of trajectory sensitivity index is proposed as a method to identify the location for dynamic VAr support to mitigate the short-term voltage instability problem caused by large disturbances. The comparison of SVCs and STATCOM performance is discussed.
机译:本文介绍了在压力很大的大型电力系统中发生电压崩溃案例的研究结果。该研究的重点是在夏季高峰负荷​​条件下,检查故障对系统大容量传输水平的影响。所研究的电力系统具有大量的空调负荷。详细建模的电源系统组件包括关键配电馈线,励磁限制器,可切换分流器,STATCOM和静态VAr补偿器的静态和动态负载。研究了感应电动机对电压稳定性的影响,重点是轨迹灵敏度。提出了轨迹灵敏度指标的概念,作为动态VAr支撑位置识别的一种方法,可以缓解大干扰引起的短期电压不稳定性问题。讨论了SVC和STATCOM性能的比较。

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