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Voltage Control in Active Distribution Networks Under Uncertainty in the System Model: A Robust Optimization Approach

机译:系统模型中不确定性下有源配电网的电压控制:鲁棒优化方法

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摘要

Within the context of ancillary services for active distribution networks (ADNs), application of intelligent control techniques is required in order to achieve specific operation objectives. Despite their differences, most control mechanisms proposed in the literature rely on the assumption that the distribution network operator has an accurate and up-to-date model of the network topology and a complete knowledge of the line parameters, i.e., a correct network admittance matrix Y. However, this assumption does not always hold in reality due to both an incomplete knowledge of the grid asset and/or a physical change of the line parameters. In this paper, we consider the problem of optimal voltage control in ADNs under uncertain, but bounded, line parameters with no assumptions on the parameters' uncertainty distribution. In particular, availability of a monitoring infrastructure is assumed and the goal is to control the active and reactive power injections of a number of distributed generators connected to the network buses in coordination with the transformers on-load tap changers. The optimal control problem is formulated as a mixed-integer linear problem by means of sensitivity coefficients and a robust optimization framework is used in order to account for the uncertainties in the network admittance matrix. In order to estimate the benefits of the proposed method, the evaluation of the algorithm is carried out by using both the IEEE 13- and the IEEE 34-nodes test feeder.
机译:在用于有源配电网(ADN)的辅助服务的上下文中,需要应用智能控制技术以实现特定的操作目标。尽管存在差异,但文献中提出的大多数控制机制均基于以下假设:配电网络运营商具有准确且最新的网络拓扑模型以及对线路参数的完整知识,即正确的网络导纳矩阵Y。但是,由于对网格资产的不完全了解和/或线参数的物理变化,这种假设并不总是成立。在本文中,我们考虑了在不确定但有界线参数的情况下,对ADN进行最佳​​电压控制的问题,该假设不考虑参数的不确定性分布。特别地,假设监视基础设施的可用性,并且目标是与变压器有载分接开关配合,控制连接到网络总线的许多分布式发电机的有功和无功注入。借助于灵敏度系数,将最优控制问题表述为混合整数线性问题,并使用鲁棒的优化框架来解决网络导纳矩阵中的不确定性。为了评估所提出方法的优势,通过使用IEEE 13节点和IEEE 34节点测试馈线对算法进行了评估。

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