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Design and Accuracy Analysis of Multilevel State Estimation Based on Smart Metering Infrastructure

机译:基于智能计量基础设施的多级状态估计设计与精度分析

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While the initial aim of smart meters is to provide energy readings for billing purposes, the availability of these measurements could open new opportunities for the management of future distribution grids. This paper presents a multilevel state estimator that exploits the smart meter measurements for monitoring both low and medium voltage grids. The goal of this paper is to present an architecture that is able to efficiently integrate smart meter measurements and to show the accuracy performance achievable if the use of real-time smart meter measurements for state estimation purposes was enabled. The design of the state estimator applies the uncertainty propagation theory for the integration of the data at different hierarchical levels. The coordination of the estimation levels is realized through a cloud-based infrastructure, which also provides the interface to auxiliary functions and the access to the estimation results for other distribution grid management applications. A mathematical analysis is performed to characterize the estimation algorithm in terms of accuracy and to show the performance achievable at different levels of the distribution grid when using the smart meter data. Simulations are presented, which validate the analytical results and demonstrate the operation of the multilevel estimator in coordination with the cloud-based platform.
机译:尽管智能电表的最初目的是提供用于计费的能源读数,但是这些测量的可用性可能为管理未来的配电网开辟新的机会。本文提出了一种利用智能电表测量技术来监视低压和中压电网的多级状态估计器。本文的目的是提出一种架构,该架构能够有效地集成智能电表测量,并显示如果启用了用于状态估计目的的实时智能电表测量,则可以实现的精度性能。状态估计器的设计将不确定性传播理论应用于不同层次数据的集成。估计级别的协调是通过基于云的基础结构实现的,该基础结构还提供了辅助功能的接口以及对其他配电网管理应用程序的估计结果的访问。执行数学分析以根据准确性来表征估计算法,并显示使用智能电表数据时在配电网的不同级别上可获得的性能。进行了仿真,这些仿真验证了分析结果并演示了与基于云的平台协同工作的多级估计器的操作。

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