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Using voltage measurements to improve the results of branch-current-based state estimators for distribution systems

机译:使用电压测量来改善配电系统基于支路电流的状态估计器的结果

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摘要

Branch-current-based formulation provides an approach to the solution of the state estimator of distribution systems. However, voltage measurements were always neglected in the branch-current-based state estimator due to its special formulations. In distribution systems, a large proportions of measurements are voltage measurements, if voltage measurements cannot be integrated into branch-current-based state estimators, the value and accuracy of branch-current-based state estimators will be greatly degraded. Therefore, an algorithm of treating voltage measurements for the branch-current-based state estimator with a phase-decoupled formulation is proposed. The approach presented in the paper substantially improves the original method. A new algorithm with constant gain matrix and phase-decoupled formulation for the treatment of voltage measurements is developed. The innovative formulation can be used to improve the results of the branch-current-based state estimators. Tests show that the proposed method can handle voltage measurements effectively and the usage of load-forecasting data and some voltage measurements can further improve the accuracy of state estimator results.
机译:基于分支电流的公式提供了一种解决配电系统状态估计器的方法。但是,由于基于支路电流的状态估计器的特殊公式,电压测量始终被忽略。在配电系统中,很大一部分测量是电压测量,如果不能将电压测量集成到基于支路电流的状态估计器中,则基于支路电流的状态估计器的值和精度将大大降低。因此,提出了一种基于相位解耦公式的基于支路电流的状态估计器处理电压测量的算法。本文提出的方法大大改进了原始方法。提出了一种具有恒定增益矩阵和相位解耦公式的电压测量新算法。创新的公式可用于改善基于支路电流的状态估计器的结果。测试表明,该方法可以有效地处理电压测量,使用负载预测数据和一些电压测量可以进一步提高状态估计器结果的准确性。

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