A Non-Exhaustive Search Algorithm to Identify Distribution Grid Operational Topology

Anandini Gandluru, Shiva Poudel, A. Dubey
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引用次数: 1

Abstract

Distribution grid, in general, is constructionally loopy but a radially operated network. Opening and closing of suitable tie-switches allow transition from one topology to another. Identifying the operational topology of a distribution system is essential for accurate control actions. This paper proposes a non-exhaustive search approach to detect the operational topology of the distribution feeder by estimating the switch statuses. In this work, a mixed-integer linear programming approach is proposed that finds the correct operational topology by identifying the system load demand and power flow variables that are closest to the corresponding measured values. The problem is constrained by distribution power flow and radial structure of the feeder. This formulation allows the inclusion of errors in power/line flow measurements making it more suitable for a practical distribution system. The proposed approach finds the correct operational topology without exhaustively searching for all possible topologies. We thoroughly validate the accuracy and effectiveness of the proposed approach in identifying correct operational topology using IEEE 123-node feeder with the help of numerous simulations studies. It is observed that the approach performs well even at very high percentages of load and flow measurement errors.
配电网运行拓扑识别的非穷举搜索算法
配电网在结构上是环形的,但却是一个径向运行的网络。打开和关闭合适的连接开关允许从一种拓扑转换到另一种拓扑。确定配电系统的运行拓扑结构对于精确的控制行动至关重要。本文提出了一种非穷举搜索方法,通过估计配电馈线的开关状态来检测配电馈线的运行拓扑。在这项工作中,提出了一种混合整数线性规划方法,通过识别最接近相应测量值的系统负载需求和潮流变量来找到正确的运行拓扑。该问题受配电网潮流和馈线径向结构的制约。该公式允许在功率/线路流量测量中包含误差,使其更适合于实际的配电系统。提出的方法可以找到正确的操作拓扑,而不需要穷尽地搜索所有可能的拓扑。通过大量的仿真研究,我们彻底验证了所提出的方法在使用IEEE 123节点馈线识别正确操作拓扑方面的准确性和有效性。观察到,即使在非常高的负载和流量测量误差百分比下,该方法也表现良好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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