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Optimal topology control with physical power flow constraints and N-1 contingency criterion

机译:具有物理潮流约束和N-1偶然性准则的最优拓扑控制

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In this paper, a novel solution method is proposed for the optimal topology control problem in AC framework with N-1 reliability. The resultant new topology of the proposed method is guaranteed to yield a better objective function value than the global solution of the problem with the original topology. In order to prove our statement, semi-definite programming relaxation is formulated to find a lower bound to the objective function value of the problem. The proposed method is favorable for parallelization to increase the computational efficiency, and the parallel computing flowchart is presented. Computational time of the algorithm for IEEE test cases is reported. An in-house power market simulator is developed to simulate a market environment complete with optimal topology control mechanism. Simulations held by participating human subjects are analyzed under the subtitles of the total operating cost, real power losses, and locational marginal price (LMP) variance. A simple example is illustrated to show that the resultant network topology may increase the real power losses while still providing a lower operating system cost than that of the original topology.
机译:本文针对具有N-1可靠性的AC框架中的最优拓扑控制问题,提出了一种新的求解方法。与原始拓扑问题的整体解决方案相比,所提出方法的新拓扑可以保证产生更好的目标函数值。为了证明我们的陈述,制定了半定程序松弛,以找到问题的目标函数值的下限。所提出的方法有利于并行化以提高计算效率,并给出了并行计算流程图。报告了用于IEEE测试用例的算法的计算时间。开发了内部电力市场模拟器,以模拟具有最佳拓扑控制机制的市场环境。在总运营成本,有功功率损耗和位置边际价格(LMP)差异的字幕下分析参与人员的仿真结果。示出了一个简单的示例,以显示所得的网络拓扑可能会增加实际功耗,同时仍提供比原始拓扑更低的操作系统成本。

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