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Optimal dispatch of reactive power for voltage regulation and balancing in unbalanced distribution systems

机译:不平衡配电系统中无功功率的最佳分配,以进行电压调节和平衡

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Optimization of distributed power assets is a powerful tool that has the potential to assist utility efforts to ensure customer voltages are within pre-defined tolerances and to improve distribution system operations. While convex relaxations of Optimal Power Flow (OPF) problems have been proposed for both balanced and unbalanced networks, these approaches do not provide universal convexity guarantees and scale inefficiently as network size and the number of constraints increase. In balanced networks, a linearized model of power flow, the LinDistFlow model, has been successfully employed to solve approximate OPF problems quickly and with high degrees of accuracy. In this work, an extension of the LinDistFlow model is proposed for unbalanced distribution systems, and is subsequently used to formulate an approximate unbalanced OPF problem that uses VAR assets for voltage balancing and regulation. Simulation results on the IEEE 13 node test feeder demonstrate the ability of the unbalanced LinDistFlow model to perform voltage regulation and balance system voltages.
机译:分布式电源资产的优化是一个强大的工具,可以协助公用事业努力确保客户电压在预定的公差范围内,并改善配电系统的运行。尽管针对平衡和不平衡网络都提出了最优潮流(OPF)问题的凸松弛,但是这些方法不能提供通用的凸保证,并且随着网络规模和约束数量的增加而无法有效地扩展。在平衡网络中,线性成功的潮流模型LinDistFlow模型已被成功地用于快速,高精度地解决近似OPF问题。在这项工作中,对不平衡配电系统提出了LinDistFlow模型的扩展,随后将其扩展为使用VAR资产进行电压平衡和调节的近似不平衡OPF问题。 IEEE 13节点测试馈线上的仿真结果证明了不平衡的LinDistFlow模型执行电压调节和平衡系统电压的能力。

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