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A method for accurate transmission line impedance parameter estimation

机译:一种精确的传输线阻抗参数估计方法

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摘要

Real-time estimation of power transmission line impedance parameters has become possible with the availability of synchronized phasor (synchrophasor) measurements of voltage and current. If sufficiently accurate, the estimated parameter values are a powerful tool for improving the performance of a range of power system monitoring, protection, and control applications, including fault location and dynamic thermal line rating. The accuracy of the parameter estimates can be reduced by unknown errors in the synchrophasors that are introduced in the measurement process. In this paper, a method is proposed with the aim of obtaining accurate estimates of potentially variable impedance parameters, in the presence of systematic errors in voltage and current measurements. The method is based on optimization to identify correction constants for the phasors. A case study of a simulated transmission line is presented to demonstrate the effectiveness of the new method, which is better in comparison with a previously proposed method. The results, as well as limits, and the potential extensions of the new method are discussed.
机译:随着电压和电流的同步相量(synchrophasor)测量的可用性,电力传输线阻抗参数的实时估计成为可能。如果足够准确,则估计的参数值将成为改善一系列电力系统监视,保护和控制应用程序(包括故障位置和动态热线额定值)性能的强大工具。测量过程中引入的同步相量中的未知误差会降低参数估计的准确性。在本文中,提出了一种方法,其目的是在存在电压和电流测量的系统误差的情况下获得对潜在可变阻抗参数的准确估计。该方法基于优化来识别相量的校正常数。提出了一个模拟传输线的案例研究,以证明该新方法的有效性,与以前提出的方法相比更好。讨论了新方法的结果,局限性以及潜在的扩展。

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