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首页> 外文期刊>Power Systems, IEEE Transactions on >A Novel Online Load Shedding Strategy for Mitigating Fault-Induced Delayed Voltage Recovery
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A Novel Online Load Shedding Strategy for Mitigating Fault-Induced Delayed Voltage Recovery

机译:减轻故障引起的延迟电压恢复的新型在线减载策略

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摘要

This paper develops a novel online fast load shedding strategy aimed at shedding the most effective load to mitigate fault-induced delayed voltage recovery (FIDVR). Induction motor kinetic energy deviation has been shown to be identical to the integral of power imbalance. Instead of using voltage as an indicator, the proposed strategy applies a centralized scheme making use of equivalent motor kinetic energy to identify the most effective loads to shed. In order to derive kinetic energy, the equivalent inertia and the speed of the induction motor are needed. A methodology is proposed to obtain these variables through online measurements. Simulations on a sample power system illustrate the novel load shedding strategy and its effectiveness. The proposed strategy is compared with conventional four-stage under-voltage load shedding (UVLS) scheme. The results have validated that the proposed strategy can effectively mitigate fault-induced delayed voltage recovery and require much less load to be shed.
机译:本文开发了一种新颖的在线快速减载策略,旨在减少最有效的负载,以减轻故障引起的延迟电压恢复(FIDVR)。感应电动机的动能偏差已证明与功率不平衡的积分相同。提议的策略不是使用电压作为指标,而是采用集中式方案,利用等效的电动机动能来确定要消除的最有效负载。为了导出动能,需要感应电动机的等效惯量和速度。提出了一种通过在线测量获得这些变量的方法。在样本电源系统上的仿真说明了新颖的减载策略及其有效性。将该策略与传统的四阶段欠压减载(UVLS)方案进行了比较。结果证实了所提出的策略可以有效地减轻故障引起的延迟电压恢复,并且所需的负载要少得多。

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