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Physically Meaningful Grid Analytics on Voltage Measurements using Graph Spectra

机译:使用图谱进行电压测量的物理意义上的网格分析

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Time synchronized measurements of voltage magnitudes or phasors are increasingly common in electrical networks. Voltage measurement statistics are informative of the underlying network structure or topology making them useful for grid monitoring. However, this connection is poorly understood and many proposed voltage analytics are purely heuristic. We use graph theory to establish sound theoretical connections between voltage measurements and the structure of the underlying network. Our results are important for many applications, from topology estimation to missing data recovery. Based on this new theory, we discuss existing analytics, transforming them from heuristic to theoretically justified approaches, and introduce new analytics. We clarify all assumptions made, to indicate when analytics may fail or perform poorly. Our work enables voltage measurement streams to be transformed into physically meaningful, intuitive, visualizable, actionable information through simple algorithms.
机译:电压幅值或相量的时间同步测量在电网中越来越普遍。电压测量统计信息可提供有关底层网络结构或拓扑的信息,使其可用于电网监控。但是,这种连接了解得很少,许多提议的电压分析纯粹是试探法。我们使用图论在电压测量和基础网络结构之间建立合理的理论联系。我们的结果对于从拓扑估计到丢失数据恢复的许多应用都很重要。基于这一新理论,我们讨论了现有的分析方法,将其从启发式方法转变为理论上合理的方法,并介绍了新的分析方法。我们澄清所有假设,以指出分析何时可能失败或表现不佳。我们的工作使电压测量流可以通过简单的算法转换为物理上有意义的,直观的,可视化的,可操作的信息。

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