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Adaptive load shedding scheme to preserve the power system stability following large disturbances

机译:自适应减载方案可在发生较大干扰后保持电力系统的稳定性

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摘要

Following large disturbances, the conventional under frequency load shedding (UFLS) relays may not operate properly, as they are designed to merely preserve the frequency stability of the system, independent of its voltage stability. In this study, an adaptive load shedding scheme is proposed to maintain the power system stability when the conventional scheme fails. In doing so, the frequency and its falling rate along with a properly defined voltage falling rate are exploited to determine closeness to the disturbance area and its severity. Accordingly, a proper amount of load is shed from the locations with the highest influence on the system stability. The proposed scheme exclusively utilises locally measured quantities and does not require a communication link. The associated logic is practical and can be easily appended to the existing UFLS relays to enhance their performance. To demonstrate the efficiency of the proposed UFLS scheme, it is applied to two large-scale power systems where the exact load model is taken into account. The obtained results verify that a large number of blackouts because of inappropriate operation of conventional UFLS relays can be prevented using the proposed scheme.
机译:在受到较大干扰后,常规的欠频减载(UFLS)继电器可能无法正常运行,因为它们的设计目的是仅保持系统的频率稳定性,而与电压稳定性无关。在这项研究中,提出了一种自适应减载方案,以在传统方案失败时维持电力系统的稳定性。这样做时,可以利用频率及其下降率以及正确定义的电压下降率来确定与干扰区域的接近程度及其严重程度。因此,从对系统稳定性有最大影响的位置减轻了适量的负载。所提出的方案专门利用本地测量的量,并且不需要通信链路。相关的逻辑很实用,可以很容易地附加到现有的UFLS继电器上以增强其性能。为了证明所提出的UFLS方案的效率,将其应用于考虑了精确负载模型的两个大型电力系统。所获得的结果证明,使用所提出的方案可以防止由于常规UFLS继电器的不当操作而导致的大量停电。

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