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首页> 外文期刊>International journal of electrical power and energy systems >Optimal power flow of a distribution system based on increasingly tight cutting planes added to a second order cone relaxation
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Optimal power flow of a distribution system based on increasingly tight cutting planes added to a second order cone relaxation

机译:基于越来越紧的切割平面的配电系统的最佳功率流,并增加了二阶圆锥松弛

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Convex relaxations of the optimal power flow (OPF) problem have received a lot of attention in the recent past. In this work, we focus on a second-order cone (SOC) relaxation applied to an OPE based on a branch flow model of a radial and balanced distribution system. We start by examining various sets of conditions ensuring the exactitude of such a relaxation, which is the main focus of the existing literature. In particular, we observe that these sets always include a requirement on the objective to be a minimization of a function increasing with the branch flow apparent powers. We consider this hypothesis to be at odds with what is to be expected of an active distribution system and demonstrate in specific case studies its counterproductive impact. We continue by introducing an objective function allowing distributed generations and storages (DGS) to take advantage of the benefits they bring to the power system as a whole. As this entails the possibility for the relaxation not to be exact, we describe and prove the theoretical convergence to optimality of an algorithm consisting in adding an increasingly tight linear cut to the SOC relaxation. In order to allow the attainment of a solution satisfying the network constraints in a finite number of steps, we continue by introducing a tailored termination criterion. Afterwards, we investigate the ability of our algorithm to obtain a satisfactory solution on several case studies, spanning various network sizes, number of nodes equipped with DGs and their level of penetration. We then conclude on the benefits brought about by this approach and reflect on its limits and the opportunities for further improvements. (C) 2015 Elsevier Ltd. All rights reserved.
机译:最佳功率流(OPF)问题的凸松弛在最近已经引起了很多关注。在这项工作中,我们专注于基于径向和平衡分配系统的分支流模型的应用于OPE的二阶锥(SOC)松弛。我们首先研究各种条件以确保这种松弛的正确性,这是现有文献的主要重点。特别是,我们观察到这些集合始终包含对目标的要求,即要使随分支流视在功率增加的函数最小化。我们认为该假设与主动分配系统的预期不一致,并在特定案例研究中证明了其适得其反的影响。我们继续介绍一种目标功能,允许分布式发电和存储(DGS)充分利用它们带给整个电力系统的好处。由于这可能导致弛豫不精确,因此我们描述并证明了算法的理论收敛性,该算法包括向SOC弛豫添加越来越严格的线性割据。为了允许在有限数量的步骤中获得满足网络约束的解决方案,我们将继续介绍定制的终止标准。之后,我们研究了我们的算法在几个案例研究中获得满意解决方案的能力,这些案例研究涵盖了各种网络规模,配备DG的节点数量及其渗透水平。然后,我们总结这种方法带来的好处,并反思其局限性和进一步改进的机会。 (C)2015 Elsevier Ltd.保留所有权利。

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