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Optimal transmission line switching for large-scale power systems using the Alternating Direction Method of Multipliers

机译:使用乘法器交替方向方法的大型电力系统的最佳传输线路切换

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It is known that in some cases, switching some transmission lines of an electric power system off may improve the optimal economic dispatch cost. This modification of the economic dispatch problem is known as optimal transmission line switching. Unfortunately, the modified problem involves binary decision variables which make the problem difficult to solve for large-scale power systems. This paper presents a method that scales well for large power systems, based on a decomposition approach known as the Alternating Direction Method of Multipliers (ADMM). The problem is broken into a convex component and a series of binary rounding operations, coupled via a penalty function. The output of the ADMM algorithm is post-processed in order to obtain a near-optimal solution to the original problem at relatively low computational cost. We measure the ADMM solution against a convex relaxation of the original problem, thereby certifying its quality without needing to solve the original combinatorial problem. The method is illustrated using the Polish 2383-bus test system.
机译:众所周知,在一些情况下,切换电力系统的一些传输线可以提高最佳的经济调度成本。这种经济调度问题的修改被称为最佳传输线路切换。不幸的是,修改的问题涉及二进制决策变量,这使得难以解决大型电力系统的问题。本文基于称为乘法器(ADMM)的交替方向方法的分解方法,提出了一种对大型电力系统进行尺度良好的方法。问题被丢弃到凸部件和一系列二进制舍入操作中,通过惩罚功能耦合。 ADMM算法的输出是后处理的,以便以相对低的计算成本获得对原始问题的近最佳解决方案。我们测量ADMM解决方案,免受原始问题的凸面放松,从而证明其质量不需要解决原始组合问题。使用波兰2383总线测试系统示出该方法。

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