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OBSERVABILITY ANALYSIS AND DISTRIBUTED STATE ESTIMATION

机译:可观察性分析和分布式状态估计

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This paper presents a power system state estimation (SE) in a distributed manner. In order to perform a state estimation algorithm we must ensure system's observability by restoring local and global observability. In the proposed method, measurements are divided into local and boundary. Each control area performs its own local state estimation using local measurements and exchanges information, concerning boundary states and measurements, with a coordination SE. The coordinator computes the overall system state vector and decides whether the SE algorithm converges or not. When every single area converges, the algorithm terminates and the system wide state vector is produced. Observability analysis and distributed state estimation algorithms are tested with the IEEE 14-bus system, and two realistic systems in Rhodes Island. Results concerning Rhodes's system are presented in section 4.
机译:本文以分布式方式呈现电力系统状态估计(SE)。为了执行状态估计算法,我们必须通过恢复本地和全局可观察性来确保系统的可观察性。在所提出的方法中,测量分为局部和边界。每个控制区域使用本地测量和交换信息,与协调SE进行交换信息,与信息,关于边界状态和测量进行交换。协调器计算整个系统状态向量,并决定SE算法是否会聚。当每个单个区域收敛时,算法终止并且产生系统宽状态向量。可观察性分析和分布式状态估计算法与IEEE 14总线系统和罗德岛的两个现实系统进行了测试。关于罗兹系统的结果在第4节中介绍。

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