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Unbalanced multi-phase distribution grid topology estimation and bus phase identification

机译:不平衡多相分布网格拓扑估计和总线阶段识别

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There is an increasing need for monitoring and controlling uncertainties brought by distributed energy resources in distribution grids. For such goal, accurate multi-phase topology is the basis for correlating measurements in unbalanced distribution networks. Unfortunately, such topology knowledge is often unavailable due to limited investment. Also, the bus phase labeling information is inaccurate due to human errors or outdated records. For this challenge, this paper utilizes smart meter data for an information-theoretic approach to learn the topology of distribution grids. Specifically, multi-phase unbalanced systems are converted into symmetrical components, namely positive, negative, and zero sequences. Then, this paper proves that the Chow-Liu algorithm finds the topology by utilizing power flow equations and the conditional independence relationships implied by the radial multi-phase structure of distribution grids with the presence of incorrect bus phase labels. At last, by utilizing Carson's equation, this paper proves that the bus phase connection can be correctly identified using voltage measurements. For validation, IEEE systems are simulated using three real data sets. The simulation results demonstrate that the algorithm is highly accurate for finding multi-phase topology even with strong load unbalancing condition and DERs. This ensures close monitoring and controlling DERs in distribution grids.
机译:越来越需要监测和控制分布式能源在分布网格中带来的不确定性。对于这样的目标,精确的多相拓扑是关联不平衡分配网络中测量的基础。不幸的是,由于投资有限,这种拓扑知识往往无法使用。此外,由于人为错误或过时的记录,总线阶段标记信息是不准确的。对于这一挑战,本文利用智能仪表数据来了解信息理论方法,以了解分发网格的拓扑。具体地,多相不平衡系统被转换为对称分量,即正,负和零序列。然后,本文证明了Chow-Liu算法通过利用电流方程和由分发网格的径向多相结构隐含的条件独立性关系来找到拓扑,其中分布网格的存在不正确的总线相位标签。最后,通过利用Carson的等式,本文证明了可以使用电压测量正确识别总线相位连接。为了验证,使用三个真实数据集模拟IEEE系统。仿真结果表明,即使强负载不平衡条件和DER,该算法高度准确地找到多相拓扑。这确保了分布网格中的密切监控和控制DER。

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