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Single Real Transformation Matrices Applied To Double Three-phase Transmission Lines

机译:单实变换矩阵应用于双三相输电线路

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摘要

Single real transformation matrices are tested as phase-mode transformation matrices of typical symmetrical systems with double three-phase and two parallel double three-phase transmission lines. These single real transformation matrices are achieved from eigenvector matrices of the mentioned systems and they are based on Clarke's matrix. Using linear combinations of the Clarke's matrix elements, the techniques applied to the single three-phase lines are extended to systems with 6 or 12 phase conductors. For transposed double three-phase lines, phase Z and Y matrices are changed into diagonal matrices in mode domain. Considering non-transposed cases of double three-phase lines, the results are not exact and the error analyses are performed using the exact eigenvalues. In case of two parallel double three-phase lines, the exact single real transformation matrix has not been obtained yet. Searching for this exact matrix, the analyses are based on a single homopolar reference. For all analyses in this paper, the homopolar mode is used as the only homopolar reference for all phase conductors of the studied system.
机译:将单个实变换矩阵作为具有双三相和两条平行双三相传输线的典型对称系统的相模变换矩阵进行测试。这些单一的实变换矩阵是从上述系统的特征向量矩阵中获得的,它们基于Clarke矩阵。通过使用Clarke矩阵元素的线性组合,将应用于单个三相线路的技术扩展到具有6或12相导体的系统。对于转置的双三相线,在模式域中将Z和Y相矩阵更改为对角矩阵。考虑到双三相线的非换位情况,结果不精确,并且使用精确的特征值进行误差分析。在两条平行双三相线的情况下,尚未获得确切的单个实数变换矩阵。在搜索此精确矩阵时,分析基于单个同极性参考。对于本文中的所有分析,均质模式被用作研究系统所有相导体的唯一均质参考。

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