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New Local Adaptive Load-shedding Methods to Mitigate Power System Blackouts

机译:新的局部自适应减负荷方法可缓解电力系统停电

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摘要

Under-frequency load shedding is a globally accepted remedial measure against a severe drop of power system frequency. With the ever-increasing size of power systems, severe frequency drops are usually caused by combinational severe disturbances. For such disturbances, the active power deficit is usually accompanied by a reactive power deficit presenting some challenges to the load-shedding protection schemes. In this article, two adaptive combinational load-shedding methods are proposed that enhance the frequency and voltage security of power systems for such disturbances. In the proposed algorithms, the under-frequency load-shedding scheme is modified so that the load shedding is adoptively started from locations that have a lower voltage stability margin. Besides, the speed of load shedding is changed adoptively depending on the voltage stability status of the system and the rate of frequency decline. The proposed methods use locally measured frequency and voltage signals and are, therefore, easily applicable. Performance of the proposed load-shedding methods has been compared to that of the conventional method for various disturbances in two different systems. Obtained simulation results confirm that by using the proposed algorithms the power system becomes more robust against large disturbances and the probability of the power system instability is decreased.
机译:低频减载是全球公认的针对电力系统频率严重下降的补救措施。随着电力系统规模的不断扩大,严重的频率下降通常是由严重的综合干扰引起的。对于这样的干扰,有功功率不足通常伴随有无功功率不足,这对减载保护方案提出了一些挑战。在本文中,提出了两种自适应组合的减载方法,这些方法可以增强电力系统针对此类干扰的频率和电压安全性。在提出的算法中,修改了低频减载方案,以便从具有较低电压稳定裕度的位置开始逐步减少负荷。此外,根据系统的电压稳定状态和频率下降的速率来改变负载的降低速度。所提出的方法使用本地测量的频率和电压信号,因此易于应用。对于两个不同系统中的各种干扰,已将建议的甩负荷方法的性能与常规方法进行了比较。获得的仿真结果证实,通过使用所提出的算法,电力系统对于较大的干扰变得更加鲁棒,并且降低了电力系统不稳定的可能性。

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