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A Sufficient Condition on Convex Relaxation of AC Optimal Power Flow in Distribution Networks

机译:配电网交流最优潮流凸松弛的充分条件

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摘要

This paper proposes a sufficient condition for the convex relaxation of AC Optimal Power Flow (OPF) in radial distribution networks as a second order cone program (SOCP) to be exact. The condition requires that the allowed reverse power flow is only reactive or active, or none. Under the proposed sufficient condition, the feasible sub-injection region (power injections of nodes excluding the root node) of the AC OPF is convex. The exactness of the convex relaxation under the proposed condition is proved through constructing a group of monotonic series with limits, which ensures that the optimal solution of the SOCP can be converted to an optimal solution of the original AC OPF. The efficacy of the convex relaxation to solve the AC OPF is demonstrated by case studies of an optimal multi-period planning problem of electric vehicles (EVs) in distribution networks.
机译:本文为二阶锥规划(SOCP)精确地提出了径向分布网络中交流最优潮流(OPF)凸松弛的充分条件。该条件要求允许的反向功率流仅是无功或有功,或者无。在建议的充分条件下,AC OPF的可行子注入区域(除根节点之外的其他节点的功率注入)是凸的。通过构造一组带极限的单调级数,证明了所提出条件下凸松弛的正确性,从而确保将SOCP的最优解转换为原始AC OPF的最优解。通过对配电网络中电动汽车(EV)的最优多周期规划问题的案例研究,证明了凸松弛解决AC OPF的功效。

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