ATC based optimal power flow for contingent power systems using differential evolution

C. Cholsuk, P. Pao-la-or, T. Kulworawanichpong
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Abstract

In this paper, optimal power flow based on available transfer capability (ATC) has been proposed for contingent power systems. In general, the total production cost is commonly used as the main objective for optimal power flow problems. However, in some circumstances, where the economical point of views is less important such as under an emergency state of partial blackout, the transmission security objective e.g. ATC is very useful. Maximizing the ATC implies to reduce probability of wide area blackout as a consequence. This paper performs contingency analysis of the power system. After an occurrence of some specific component failure, an ATC based optimal power flow problem has been formulated and solved by differential evolution (DE) method. To illustrate its use, the standard IEEE 14-bus test system was tested.
基于ATC的差分演化应急电力系统最优潮流
本文提出了基于可用输电能力(ATC)的备用电力系统最优潮流。一般来说,总生产成本通常被用作最优潮流问题的主要目标。然而,在某些情况下,在经济角度不太重要的情况下,例如在局部停电的紧急状态下,传输安全目标(例如ATC)是非常有用的。最大化ATC意味着减少大面积停电的可能性。本文对电力系统进行了应急分析。在某一特定部件发生故障后,提出了一种基于ATC的最优潮流问题,并用差分进化方法求解。为了说明它的使用,对标准IEEE 14总线测试系统进行了测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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