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Distribution system state estimation using the Hamiltonian cycle theory

机译:基于哈密顿循环理论的配电系统状态估计

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Since the origin of energy management systems, state estimation applications have aided in automatic power system operations, mainly for transmission systems. Currently, however, smart grid concepts are modifying the behavior of distribution systems through a rapid increase of controllable distributed generators, demand response and electric vehicles. Consequently, the advanced metering infrastructure is providing a large amount of synchronized metering data with high accuracy and resolution, which favors the development of state estimation procedures to sustain distribution management systems. Therefore, this paper presents the formulation of a novel algorithm for state estimation solution in distribution networks using the Hamiltonian cycle theory, where the network states are quickly obtained through a calculation scheme under the normal operating conditions.
机译:自能源管理系统问世以来,状态估计应用程序就已经在电力系统的自动操作(主要用于传输系统)中提供了帮助。但是,当前,智能电网概念正在通过可控分布式发电机,需求响应和电动汽车的快速增长来修改配电系统的行为。因此,先进的计量基础设施提供了具有高精度和高分辨率的大量同步计量数据,这有利于开发状态估计程序以维持配电管理系统。因此,本文提出了一种基于哈密顿循环理论的配电网状态估计算法的新算法,该算法可以通过计算方案在正常运行条件下快速获得网络状态。

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