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Entropy-Based Metric for Characterization of Delayed Voltage Recovery

机译:基于熵的延迟电压恢复特性度量

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摘要

In this paper, we introduce a novel entropy-based metric to characterize the fault-induced delayed voltage recovery (FIDVR) phenomenon. In particular, we make use of Kullback-Leibler (KL) divergence to determine both the rate and the level of voltage recovery following a fault or disturbance. The computation of the entropy-based measure relies on voltage time-series data and is independent of the underlying system model used to generate the voltage time-series. The proposed measure provides quantitative information about the degree of WECC voltage performance violation for FIDVR phenomenon. The quantitative measure for violation allows one to compare the voltage responses of different buses to various contingencies and to rank order them, based on the degree of violation.
机译:在本文中,我们引入了一种新的基于熵的度量来表征故障引起的延迟电压恢复(FIDVR)现象。特别是,我们利用Kullback-Leibler(KL)散度来确定故障或干扰后电压恢复的速率和水平。基于熵的度量的计算依赖于电压时间序列数据,并且独立于用于生成电压时间序列的基础系统模型。拟议的措施提供了有关FIDVR现象的WECC电压性能违规程度的定量信息。定量的违规措施允许人们比较不同母线对各种突发事件的电压响应,并根据违规程度对它们进行排序。

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