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Topology error identification through orthogonal estimation methods and hypothesis testing power systems

机译:通过正交估计方法和假设检验拓扑结构识别拓扑错误

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This paper proposes a method for topology error detection and identification to be used in connection with orthogonal state estimators based on Givens rotations without square roots. The relevant portion of the electric network is represented at the substation level, in order to include the circuit breakers suspected of being erroneously modeled. The detection of topology errors relies on tests performed on the normalized residuals associated with information about the status of those circuit breakers. A hypothesis testing procedure is then employed to identify the correct switching branch status, where each possible combination of suspect status compose a distinct alternative hypothesis. The hypothesis which receives the largest support from the measurement set is determined through an application of Bayes' theorem, which provides the conditional a posteriori probability for each alternative hypothesis. Subnetworks of the IEEE 14-bus and 30-bus test systems are used to evaluate the performance of the proposed methodology.
机译:本文提出了一种基于不带平方根的给定旋转的,与正交状态估计器结合使用的拓扑错误检测和识别方法。电网的相关部分在变电站级别上表示,以便包括怀疑被错误建模的断路器。拓扑错误的检测依赖于对归一化残差进行的测试,这些残差与那些断路器的状态信息有关。然后采用假设检验程序来识别正确的交换分支状态,其中可疑状态的每种可能组合都构成了不同的替代假设。通过应用贝叶斯定理确定从测量集获得最大支持的假设,该定理为每个替代假设提供了条件后验概率。 IEEE 14总线和30总线测试系统的子网用于评估所提出方法的性能。

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