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Hierarchical Decentralized Network Reconfiguration for Smart Distribution Systems—Part II: Applications to Test Systems

机译:智能配电系统的分层分散式网络重新配置-第二部分:测试系统的应用

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A hierarchical decentralized network reconfiguration approach to minimize power losses for smart distribution systems was presented in Part I. In this paper, the proposed approach is applied to four test distribution systems to examine its performance. A demonstration system consisting of the test system and distributed intelligent agents is built using MATLAB/Simulink to illustrate how the decentralized approach is implemented. Simulation results of the proposed approach are then compared with results of a centralized implementation and the harmony search method. It is shown that the decentralized approach can achieve similar results as other methods with significantly reduced computation time. The impacts of time-varying loads and faults are also studied through dynamic network reconfiguration on the 118-bus test system. Simulation results illustrate that dynamic network reconfiguration with time-ahead planning can determine the optimal configuration for each operating period to significantly reduce system energy losses. The enhanced performance of the hierarchical decentralized approach is clearly established.
机译:第一部分介绍了一种层次化的分散式网络重新配置方法,以最大程度地减少智能配电系统的功率损耗。使用MATLAB / Simulink构建了一个包含测试系统和分布式智能代理的演示系统,以说明如何实现分散方法。然后将所提出的方法的仿真结果与集中实施和和声搜索方法的结果进行比较。结果表明,分散式方法可以实现与其他方法相似的结果,并且计算时间大大减少。还通过在118总线测试系统上进行动态网络重新配置来研究时变负载和故障的影响。仿真结果表明,采用提前计划的动态网络重新配置可以确定每个运行周期的最佳配置,从而显着减少系统能量损耗。明确建立了分级分散方法的增强性能。

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