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Joint Estimation of Operational Topology and Outages for Unbalanced Power Distribution Systems

机译:联合估计不平衡配电系统的运营拓扑和中断

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An electric power distribution system is operated in several distinct radial topologies by opening and closing of system's sectionalizing and tie switches. The estimation of the system's current operational topology is a precursor to implementing any optimal control actions (during normal operation) or restorative actions (during outage condition). This paper presents a mathematical programming approach to estimate the operational topology of a three-phase unbalanced power distribution system under both outage and normal operating conditions. Specifically, a minimum weighted least absolute value estimator is proposed that uses the line flow measurements, historical/forecasted load data, and ping measurements and solves a mixed-integer linear program (MILP) to estimate the operational topology and any outaged sections simultaneously. We thoroughly validate the accuracy of the proposed approach using IEEE 123-bus and a 1069-bus three-phase multi-feeder test system with the help of numerous simulations. It is observed that the approach performs well even at high percentages of measurement errors.
机译:通过开启和关闭系统的划分和系带开关,在几种不同的径向拓扑中运行电力分配系统。系统目前的操作拓扑的估计是实现任何最佳控制动作(在正常操作期间)或恢复操作(在中断条件下)的前体。本文提出了一种数学编程方法,可以在中断和正常运行条件下估算三相不平衡配电系统的运行拓扑。具体地,提出了一种最小加权最小绝对值估计器,其使用线路流量测量,历史/预测负载数据和Ping测量,并解决混合整数线性程序(MILP)来同时估计操作拓扑和任何分隔的部分。我们通过众多模拟彻底验证了使用IEEE 123总线和1069总线三相多进料器测试系统的提出方法的准确性。观察到,即使在高百分比的测量误差下,该方法也表现良好。

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