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Novel Fault Distance Estimation Method for Three-Terminal Transmission Line

机译:三端传输线的新型故障距离估计方法

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摘要

A new faulty section identification and fault distance estimation technique for three-terminal transmission line (TTL) is proposed in this paper. It is based on the derivation of three indices by solving non-linear equations with iterative method utilizing synchronized measurements from three ends of the line. In the absence of synchronization, an angle synchronization operator is derived for building a common reference among the three terminals. The efficacy of the technique is verified by generating several fault cases on an existing Indian 400 kV TTL using PSCAD/EMTDC software. Reported results demonstrate the capability of the presented technique for all types of fault on three-terminal transposed/untransposed as well as the non-homogeneous transmission line. It also provides accurate fault location under comprehensive variation in type of fault, line length, fault inception angle, complex fault impedance, source impedance, and current transformer (CT) saturation condition. Its accuracy remains almost constant despite errors in line parameters, as well as synchronization and noise in the measured signals. The initial guess has a minimal impact on the accuracy and convergence of the presented technique. The attained results reveal higher accuracy and better robustness of the proposed technique in comparison with those of several existing techniques.
机译:本文提出了一种新的故障部分识别和三端传输线(TTL)的故障距离估计技术。通过利用来自线的三端的同步测量的迭代方法来解决非线性方程,基于三个指标的推导。在没有同步的情况下,导出角度同步运算符以构建三个终端之间的公共参考。通过使用PSCAD / EMTDC软件在现有的印度400 kV TTL上产生几个故障情况来验证该技术的功效。据报道的结果证明了在三端转换/未经播出的三端子上的所有类型故障以及非均匀传输线上的呈现技术的能力。它还在故障,线长,故障成立角度,复杂故障阻抗,源阻抗,源阻抗和电流互感器(CT)饱和条件下提供准确的故障位置。尽管线参数中的错误以及测量信号中的同步和噪声,其精度几乎保持恒定。初始猜测对所提出的技术的准确性和收敛性有最小的影响。达到的结果揭示了与若干现有技术相比的提出技术的更高的准确性和更好的稳健性。

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