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Probabilistic Study of Undervoltage Load Shedding Scheme to Mitigate the Impact of Protection System Hidden Failures

机译:欠电压负荷脱落方案的概率研究减轻保护系统隐藏失败的影响

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摘要

The investigations on recent blackouts have disclosed that one of the main reasons for cascaded tripping of protection systems is hidden failures (HFs). This involves an in-depth study of the different modes of HF in protection systems to assess their impact on cascading events in a power grid. This paper portrays a detailed study on the modeling of different HF modes and proposes a supervised undervoltage load-shedding scheme to further reduce the likelihood of cascading events caused by HFs. The proposed methodology uses two different probabilistic models of HFs to assess HFs' impact on cascading events. The proposed methodology is validated through numerous case studies on the IEEE 57-bus network. It is also observed that inclusion of self-monitoring and control features in digital relays significantly reduces the risk of wide-area blackouts. The methodology can be effectively adopted for planning, inspection, and repair of the protection system and the maintenance of it where investment guarantees its reliability.
机译:对最近停电的调查披露了保护系统级联跳闸的主要原因之一是隐藏的失败(HFS)。这涉及保护系统中的HF的不同模式的深入研究,以评估它们对电网中的级联事件的影响。本文描绘了对不同HF模式的建模的详细研究,并提出了监督欠压载荷脱落方案,以进一步降低HFS引起的级联事件的可能性。所提出的方法使用两种不同的HFS概率模型来评估对级联事件的HFS影响。通过对IEEE 57总线网络的许多案例研究验证了所提出的方法。还观察到,在数字继电器中包含自我监测和控制特征显着降低了广域停电的风险。该方法可以有效地采用保护系统的规划,检查和修理和维护投资保障其可靠性。

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