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Model-Free Optimal Voltage Phasor Regulation in Unbalanced Distribution Systems

机译:不平衡配电系统中的无模型最优相量调节

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The proliferation of voltage Phasor Measurement Units (PMUs) into electric power distribution grids presents new opportunities for utility operators to manage their systems more effectively. In particular, distribution-level PMUs can serve as proxy measurements for active and reactive power flows, thus alleviating the need for current transformer-based measurements for certain applications. In this work, we explore the use of distribution PMU measurements to optimally control line power flows without explicit measurements of these quantities and without a priori knowledge of the underlying distribution system topology. To do so, we extend a 2 dimensional Extremum Seeking (2D-ES) control paradigm to simultaneously manage Distributed Energy Resource (DER) active and reactive power contributions in unbalanced distribution systems. Simulation results show the ability of the proposed approach to virtually island different portions of a 3-phase unbalanced the network using DER injections while maintaining proper voltage magnitudes in the rest of the network.
机译:电压相量测量单元(PMU)向配电网的扩散为公用事业运营商提供了更有效地管理其系统的新机会。特别是,配电级PMU可以用作有功和无功潮流的代理测量,从而减轻了某些应用对基于电流互感器的测量的需要。在这项工作中,我们探索了使用配电PMU测量来最佳地控制线路功率流,而无需对这些数量进行明确测量,也无需事先了解基础配电系统拓扑。为此,我们扩展了二维极值搜索(2D-ES)控制范例,以同时管理不平衡配电系统中的分布式能源(DER)有功和无功功率贡献。仿真结果表明,所提出的方法能够利用DER注入在几乎不孤岛的三相不平衡网络中隔离,同时在其余网络中保持适当的电压幅度。

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