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An Adaptive Method for Detection and Correction of Errors in PMU Measurements

机译:检测和校正PMU测量中的误差的自适应方法

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摘要

PMU data are expected to be GPS-synchronized measurements with highly accurate magnitude and phase angle information. However, this potential accuracy is not always achieved in actual field installations due to various causes. It has been observed in some PMU measurements that the voltage and current phasors are corrupted by noise and bias errors. This paper presents a novel method for detection and correction of errors in PMU measurements with the concept of calibration factors. The proposed method uses nonlinear optimal estimation theory to calculate calibration factor using a traditional model of an untransposed transmission line with unbalanced load. This method is intended to work as a prefiltering scheme that can significantly improve the accuracy of the PMU measurement for further use in system state estimation, transient stability monitoring, wide area protection, etc. Case studies based on simulated data are presented to demonstrate the effectiveness and robustness of the proposed method.
机译:PMU数据有望通过GPS同步测量,并具有高度准确的幅度和相位角信息。但是,由于各种原因,在实际的现场安装中并不总是能达到这种潜在的精度。在某些PMU测量中已经观察到,电压和电流相量会因噪声和偏置误差而损坏。本文提出了一种新的方法,利用校准因子的概念来检测和纠正PMU测量中的误差。该方法利用非线性最优估计理论,利用传统的不平衡负荷的不换位输电线路模型来计算标定因子。此方法旨在用作预过滤方案,可以显着提高PMU测量的准确性,以进一步用于系统状态估计,瞬态稳定性监视,广域保护等。基于仿真数据的案例研究表明了其有效性。以及所提出方法的鲁棒性。

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