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A revised branch current-based distribution system state estimation algorithm and meter placement impact

机译:修正的基于分支电流的配电系统状态估计算法和电表放置影响

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摘要

With the development of automation in distribution systems, distribution supervisory control and data acquisition (SCADA) and many automated meter reading (AMR) systems have been installed on distribution systems. Also distribution management system (DMS) have advanced and include more sophisticated analysis tools. The combination of these developments is providing a platform for development of distribution system state estimation (DSE). A branch-current-based three-phase state estimation algorithm for distribution systems has been developed and tested. This method chooses the magnitude and phase angle of the branch current as the state variables. Because of the limited number of real-time measurements in the distribution system, the state estimator can not acquire enough real-time measurements for convergence, so pseudo-measurements are necessary for distribution system state estimator. The load estimated at every node from the AMR systems is used as a pseudo-measurement for the state estimator. The algorithm has been tested on three IEEE radial test feeders. In addition to this new strategy for DSE, another issue is meter-placement. This topic includes the type of measurement as well as the location of the measurement. Our results show the impact of these two issues on accuracy. Several general meter rules based on this analysis are outlined.
机译:随着配电系统自动化的发展,配电系统已经安装了配电监控和数据采集(SCADA)以及许多自动抄表(AMR)系统。分销管理系统(DMS)也是先进的,并包括更复杂的分析工具。这些发展的结合为配电系统状态估计(DSE)的发展提供了一个平台。已经开发和测试了基于支路电流的配电系统三相状态估计算法。该方法选择支路电流的大小和相角作为状态变量。由于配电系统中实时测量的数量有限,状态估计器无法获取足够的实时测量以进行收敛,因此伪测量对于配电系统状态估计器是必需的。从AMR系统在每个节点处估计的负载用作状态估计器的伪测量。该算法已在三个IEEE径向测试馈线上进行了测试。除了DSE的这一新策略外,另一个问题是仪表放置。本主题包括测量的类型以及测量的位置。我们的结果显示了这两个问题对准确性的影响。概述了基于此分析的几个通用仪表规则。

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