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Novel methodology for optimal reconfiguration of distribution networks with distributed energy resources

机译:具有分布式能源资源的配电网最优重组的新方法

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This paper develops three novel methodologies for optimal reconfiguration of distribution networks in the presence of distributed energy resources (DERs). The novelty is in achieving a non-conservative and robust solution to grid reconfiguration. The optimal solution is the minimum-loss-configuration of the distribution network taking into account the cost of switching and the grid operational constraints. The methods are based on the concepts of receding horizon control (RHC) and scenario analysis (SA) which inherently optimize switching costs and losses. The salient feature of incorporating RHC and SA is that it avoids the need to pre-define the period of change of configuration. The methods vary in their degree of robustness and conservatism. A robust configuration will not violate the constraints under any of the predicted DER variations called scenarios. A non-conservative configuration exploits better benefits with respect to the objective of reconfiguration under all scenarios. Depending on the desired level of robustness and non-conservatism, one of the three methods developed in this paper can be used to find the optimal configuration. The methods can be used for planning as well as for operation of the distribution network since they indicate the most frequently open switches in the network and the time at which they are to be operated. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文开发了三种新颖的方法,可在存在分布式能源(DER)的情况下优化配电网络的最佳配置。新颖之处在于实现了一种非保守且鲁棒的网格重新配置解决方案。最佳解决方案是配电网的最小损耗配置,同时考虑切换成本和电网运行约束。这些方法基于后退水平控制(RHC)和方案分析(SA)的概念,它们固有地优化了转换成本和损失。合并RHC和SA的显着特征是它避免了预先定义配置更改周期的需要。这些方法的鲁棒性和保守程度各不相同。健壮的配置不会违反称为场景的任何预测DER变化的约束。在所有情况下,非保守配置在重新配置的目标方面都可以更好地利用收益。根据所需的鲁棒性和非保守性水平,可以使用本文开发的三种方法之一来找到最佳配置。该方法可用于规划以及分配网络的操作,因为它们指示网络中最常断开的交换机以及它们将被操作的时间。 (C)2015 Elsevier B.V.保留所有权利。

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