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Comprehensive approach for prediction and assessment of power system transient stability in real-time

机译:实时预测和评估电力系统暂态稳定的综合方法

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摘要

Secure operation of power systems is receiving a renewed interest due to considerable structural changes and greater uncertainties. Thus, motivated by implementation of wide-area measurement systems in power systems worldwide, recent research work is being devoted to the development of enhanced tools for fast security assessment within reduced time frames. The work presented in this paper introduces an approach that exploits the post-disturbance data acquired via phasor measurement units (PMUs) by using a finite difference based method for the prediction of rotor angles, data-mining-based clustering for identification of critical machines, and single-machine-infinite bus (SMIB) transformation to evaluate the system transient stability in terms of unstable margin and time to instability. Numerical results obtained by applying the approach on the New England test system demonstrates the feasibility and effectiveness that could be achieved in predicting the critical machines and unstable conditions, which is also of great value for defining suitable emergency control actions.
机译:由于重大的结构变化和更大的不确定性,电力系统的安全运行受到了新的关注。因此,受全球电力系统中广域测量系统的实施的推动,最近的研究工作致力于开发增强的工具,以便在较短的时间内进行快速安全评估。本文介绍的工作介绍了一种方法,该方法利用相量测量单元(PMU)采集的扰后数据,该方法采用基于有限差分的方法来预测转子角度,基于数据挖掘的聚类来识别关键机器,和单机无穷大总线(SMIB)转换,以不稳定的裕量和不稳定时间评估系统瞬态稳定性。通过在新英格兰测试系统上应用该方法获得的数值结果表明,在预测关键机器和不稳定状况方面可以实现可行性和有效性,这对于定义适当的应急控制措施也具有重要价值。

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