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Phasor measurement units placement considering double contingency by differential evolution algorithm based on Pareto method

机译:Phasor测量单位在考虑基于Pareto方法的差分演进算法考虑双重差异

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This paper suggests a methodology for Phasor Measurement Units (PMUs) optimum placement for State Estimation (SE) with regard to double contingency. Firstly, SE problem is converted into the optimization one where the fitness function is the number of unobservable nodes that is specified on the basis of Singular Value Decomposition (SVD). In the regular condition, Differential Evolution (DE) method is utilized to discover the optimum PMUs placement. According to uncertain events, a multi-objective problem is hence performed. Here, to attain this, DE method on the basis of Pareto optimum procedure is proposed. The proposed methodology is employed for the IEEE 30-bus test system considering several cases and results are prepared to assess the optimum PMUs places.
机译:本文提出了一种关于分子测量单元(PMU)的方法的方法,用于双次应急的状态估计(SE)。首先,SE问题被转换为优化一个,其中健身功能是基于奇异值分解(SVD)指定的未接受的节点的数量。在常规条件下,利用差分演进(DE)方法来发现最佳PMU放置。根据不确定的事件,因此执行了多目标问题。在这里,为了实现这一点,提出了基于Pareto优化程序的方法。考虑几种情况,所提出的方法用于IEEE 30-Bus测试系统,并准备评估最佳PMU的结果。

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