Linear Approximations for the Influence of Phasor Angle Difference Errors on Line Parameter Calculation

A. Xue, Feiyang Xu, K. Martin, Jingsong Xu, Hongyu You, T. Bi
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Abstract

Phase angle measurements from phasor measurement units (PMUs) may have errors that can significantly affect line parameter calculation. In this paper, approximate expressions for the influence of phase angle difference errors on line parameter calculation are derived. Specifically, first the PMU phase angle error at both ends of a line is analyzed and an equivalent synchronization error is defined. Second, approximated expressions for the influence of current & voltage phase angle difference error on the line parameters are derived. The voltage amplitude ratio on the relative error of line reactance, resistance and capacitance measurement through the $\pi -$type equivalent model are considered. The influence of voltage and current phase angle difference error on reactance and resistance is shown from the perspective of relative sensitivity. The relative sensitivity expressions in active power form are given and the identifiable conditions of line reactance parameters based on PMU data are given. In addition, this paper presents the influence mechanism of voltage magnitude and discusses the case of synchronization issue. Finally, the accuracy of the sensitivity equations are verified by simulations, and the influence of the voltage amplitude ratio and the line flow on the identification result is quantitatively analyzed.
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相角差误差对线路参数计算影响的线性近似
相量测量单元(pmu)的相角测量可能存在误差,这可能会严重影响线路参数的计算。本文导出了相角差误差对线路参数计算影响的近似表达式。具体而言,首先分析了线路两端的PMU相位角误差,并定义了等效同步误差。其次,导出了电流、电压相角差误差对线路参数影响的近似表达式。通过$\pi -$型等效模型,考虑了电压幅值比对线路电抗、电阻和电容测量相对误差的影响。从相对灵敏度的角度分析了电压和电流相角差误差对电抗和电阻的影响。给出了有功形式下的相对灵敏度表达式和基于PMU数据的线路电抗参数辨识条件。此外,本文还介绍了电压幅值的影响机理,并讨论了同步问题的情况。最后,通过仿真验证了灵敏度方程的准确性,并定量分析了电压幅值比和线路流量对辨识结果的影响。
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