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Adaptive Tuning of Frequency Thresholds Using Voltage Drop Data in Decentralized Load Shedding

机译:分散负荷削减中使用压降数据自适应调整频率阈值

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摘要

Load shedding (LS) is the last firewall and the most expensive control action against power system blackout. In the conventional under frequency LS (UFLS) schemes, the load drop locations are already determined independently of the event location. Furthermore, the frequency thresholds of LS relays are prespecified and constant values which may not be a comprehensive solution for widespread range of possible events. This paper addresses the decentralized LS in which the instantaneous voltage deviation of load buses is used to determine the frequency thresholds of LS relays. The higher frequency thresholds are assigned to the loads with larger voltage decay which are often located in the vicinity of disturbance location. The proposed method simultaneously benefits from individual UFLS and under voltage LS (UVLS) features which operate in the power system without coordination. Numerical simulations in DigSilent PowerFactory software confirm the efficiency of proposed methodology in the stabilization of the power system after various severe contingencies.
机译:减载(LS)是最后的防火墙,也是防止电源中断的最昂贵的控制措施。在常规的低频LS(UFLS)方案中,已经独立于事件位置确定了负载下降位置。此外,LS继电器的频率阈值是预先指定的,并且恒定值可能不是广泛的可能事件的全面解决方案。本文讨论了分散式LS,其中负载母线的瞬时电压偏差用于确定LS继电器的频率阈值。较高的频率阈值被分配给电压衰减较大的负载,这些负载通常位于干扰位置附近。所提出的方法同时受益于单个UFLS和欠压LS(UVLS)功能,这些功能在电力系统中运行而无需协调。 DigSilent PowerFactory软件中的数值模拟证实了各种严重事故后所提出的方法在稳定电力系统中的效率。

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