面向智能电网拓扑识别的传感器优化布局

Ananth Narayan Samudrala, M. Amini, S. Kar, Rick S. Blum
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引用次数: 16

摘要

准确的网络拓扑信息对智能配电系统的安全运行至关重要。线路中断可以改变配电网络的运行拓扑结构。因此,通过检测中断来进行拓扑识别是一项重要的任务,以避免操作员认为存在的拓扑与实际拓扑之间的不匹配。配电系统以放射状树的方式运行,最近采用传感器集成来实时监控网络。本文提出了一种基于传感器测量值的统计测试来实现停机检测的传感器最优放置方案。使用两种类型的传感器,节点传感器和线路传感器,我们提出了一种新的最优传感器放置公式,作为一个具有二元决策变量的成本优化问题,即在每条总线/线路上放置或不放置传感器。所提出的停机检测放置策略的优点是它包含了各种类型的传感器,不依赖于负荷预测统计,并且具有成本效益。给出了数值结果,说明了该布局方案的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Sensor Placement for Topology Identification in Smart Power Grids
Accurate network topology information is critical for secure operation of smart power distribution systems. Line outages can change the operational topology of a distribution network. As a result, topology identification by detecting outages is an important task to avoid mismatch between the topology that the operator believes is present and the actual topology. Power distribution systems are operated as radial trees and are recently adopting the integration of sensors to monitor the network in real time. In this paper, an optimal sensor placement solution is proposed that enables outage detection through statistical tests based on sensor measurements. Using two types of sensors, node sensors and line sensors, we propose a novel formulation for the optimal sensor placement as a cost optimization problem with binary decision variables, i.e., to place or not place a sensor at each bus/line. The advantage of the proposed placement strategy for outage detection is that it incorporates various types of sensors, is independent of load forecast statistics and is cost effective. Numerical results illustrating the placement solution are presented.
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