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An Intelligent Wide Area Synchrophasor Based System for Predicting and Mitigating Transient Instabilities

机译:基于智能广域同步相量的预测和缓解暂态不稳定性的系统

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Increasing expansion of power systems and grids are accompanied nowadays by innovation in smart grid solutions to maintain systems stability. This paper proposes an intelligent wide area synchrophasor based system (IWAS) for predicting and mitigating transient instabilities. The IWAS incorporates artificial neural networks (ANN) for transient stability prediction. The ANN makes use of the advent of phasor measurements units (PMU) for real-time prediction. Coherent groups of generators—which swing together—is identified through an algorithm based on PMU measurements. A remedial action scheme (RAS) is applied to counteract the system instability by splitting the system into islands and initiate under frequency load shedding actions. The potential of the proposed approach is tested using New England 39 bus system.
机译:如今,随着电力系统和电网扩展的不断增加,智能电网解决方案不断创新以维持系统的稳定性。本文提出了一种基于智能广域同步相量的系统(IWAS),用于预测和缓解瞬态不稳定性。 IWAS合并了人工神经网络(ANN),用于暂态稳定性预测。人工神经网络利用相量测量单位(PMU)的出现进行实时预测。通过基于PMU测量的算法识别在一起的发电机组(它们一起摆动)。补救措施方案(RAS)用于通过将系统分成多个岛并发起在频率下的减载措施来抵消系统的不稳定性。使用新英格兰39总线系统测试了该方法的潜力。

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