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Slope-Permissive Under-Voltage Load Shed Relay for Delayed Voltage Recovery Mitigation

机译:斜率允许的欠压减载继电器,用于缓解延迟的电压恢复

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In this paper, a new relay algorithm is proposed for under-voltage load shedding (UVLS) based on rate of voltage recovery and predicted time to recover above a preset voltage threshold. Simulation experience in the Southern Electric System has shown that conventional UVLS relay logic is ill-suited to the task of mitigating delayed voltage recovery and fast voltage collapse situations while maintaining compliance with existing NERC Reliability Standards. The proposed scheme continuously monitors both voltage magnitude and rate-of-change of voltage magnitude and uses these values to determine a projected voltage recovery time following a contingency event. If the projected recovery time is such that resultant system conditions are unacceptable (e.g., major load loss, loss of generation, or voltage collapse), the relay will operate to shed load at the distribution feeder level. This unique scheme has been implemented in a commercially-available programmable relay and is presently installed and active in a number of substations in Georgia Power Company.
机译:在本文中,基于电压恢复速率和预测的恢复到预设电压阈值以上的时间,提出了一种用于欠压减载(UVLS)的新继电器算法。南方电气系统的仿真经验表明,传统的UVLS继电器逻辑不适用于缓解延迟的电压恢复和快速的电压崩溃情况,同时又不违反现有NERC可靠性标准的任务。所提出的方案连续监视电压幅度和电压幅度的变化率,并使用这些值来确定意外事件之后的预计电压恢复时间。如果预计的恢复时间使最终的系统状况不可接受(例如,重大负载损失,发电损失或电压崩溃),则继电器将运行以在配电馈线级降低负载。这种独特的方案已在市售的可编程继电器中实现,目前已安装在佐治亚州电力公司的多个变电站中并在其中运行。

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