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Real-Time Monitoring of Points of Common Coupling in Distribution Systems Through State Estimation and Geometric Tests

机译:通过状态估计和几何测试实时监控配电系统中公共耦合点

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This paper presents an extended state estimation method which allows the identification of unexpected power injections at multiple points of common coupling (PCCs) of power distribution grids. The developed state estimator makes use of a three-phase network modeling where active and reactive power injection levels at PCCs are estimated and checked in real time with the values expected by the system operator. The estimation algorithm applies a sparse tableau formulation in which equality constraints are employed to model power injection assumptions at PCCs. The identification of unexpected power injections is then performed using a methodology based on normalized Lagrange multipliers and geometric tests. Simulations conducted on a modified version of the IEEE 34-node test feeder illustrate the accuracy and applicability of the proposed approach, fostering discussions regarding the future of real-time monitoring on power distribution systems.
机译:本文提出了一种扩展状态估计方法,该方法可以识别配电网公共耦合(PCC)多个点上的意外功率注入。先进的状态估计器利用三相网络模型,其中PCC上的有功功率和无功功率注入水平是通过系统操作员期望的值进行实时估计和检查的。估计算法采用稀疏表述形式,其中采用等式约束来对PCC处的功率注入假设进行建模。然后,使用基于标准化拉格朗日乘数和几何检验的方法进行意外功率注入的识别。在IEEE 34节点测试馈线的修改版本上进行的仿真说明了所提出方法的准确性和适用性,从而引发了有关配电系统实时监控的未来的讨论。

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