Zero-Sequence Impedance Estimation in Mutually Coupled Transmission Lines Using Fault Record Data

O. A. Gashteroodkhani, M. Majidi, M. Etezadi-Amoli
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Abstract

Estimation of line impedances is of great interest to power system engineers. Power utility companies use different software to calculate line impedances based on the conductor and structure types. However, the calculated values cannot remain accurate due to atmospheric condition. Also, due to lack of communication between the line construction, maintenance, and other departments, a line conductor/structure may be partially/totally changed without notifying the affected departments. Various estimation methods are used to dynamically obtain line impedance values. The majority of these methods use phasor measurement units (PMU s) for the impedances estimation. These methods require PMU s in the substations and fail to measure zero-sequence voltages/currents due to inadequate zero-sequence components under normal operation. The estimation of zero-sequence impedances is even more challenging for parallel transmission lines which are mutually coupled. This study proposes a method for estimating the self and mutual zero-sequence impedances for mutually coupled transmission lines using recorded fault data by protective relays. Extensive simulation results in RSCAD/RTDS indicate that the proposed approach has high accuracy in estimating the self and mutual zero-sequence impedances as well as the fault location in parallel transmission lines.
基于故障记录数据的互耦传输线零序阻抗估计
线路阻抗的估计是电力系统工程师非常感兴趣的问题。电力公司根据导体和结构类型使用不同的软件来计算线路阻抗。然而,由于大气条件的影响,计算值不能保持准确。此外,由于线路建设、维护和其他部门之间缺乏沟通,线路导体/结构可能在未通知相关部门的情况下部分或全部改变。各种估计方法用于动态获取线路阻抗值。这些方法大多使用相量测量单元(PMU)进行阻抗估计。这些方法需要在变电站中安装PMU,并且在正常运行下由于零序元件不足而无法测量零序电压/电流。对于相互耦合的并联传输线,零序阻抗的估计更具挑战性。提出了一种利用保护继电器记录的故障数据估计互耦传输线自零序和互零序阻抗的方法。在RSCAD/RTDS中进行的大量仿真结果表明,该方法具有较高的自、互零序阻抗估计精度和故障定位精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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