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An Alternative Procedure to Decrease the Dimension of the Frequency Dependent Modal Transformation Matrices: Application in Three-Phase Transmission Lines With a Vertical Symmetry Plane

机译:一种替代过程,以减少频率相关模态变换矩阵的维度:用垂直对称平面应用三相传输线

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The objective of this paper is to show an alternative representation in time domain of a non-transposed three-phase transmission line decomposed in its exact modes by using two transformation matrices. The first matrix is Clarke's matrix that is real, frequency independent, easily represented in computational transient programs (EMTP) and separates the line into Quasi-modes α, β and zero. After that, Quasi-modes α and zero are decomposed into their exact modes by using a modal transformation matrix whose elements can be synthesized in time domain through standard curve-fitting techniques. The main advantage of this alternative representation is to reduce the processing time because a frequency dependent modal transformation matrix of a three-phase line has nine elements to be represented in time domain while a modal transformation matrix of a two-phase line has only four elements. This paper shows modal decomposition process and eigenvectors of a non-transposed three-phase line with a vertical symmetry plane whose nominal voltage is 440 kV and line length is 500 km.
机译:本文的目的是通过使用两个变换矩阵在其精确模式下分解的非转换三相传输线的时域中的替代表示。第一个矩阵是克拉克的矩阵,是真实的,频率无关,在计算瞬态程序(EMTP)中容易表示,并将该线分成准模式α,β和零。之后,准模α和零通过使用模态变换矩阵分解成它们的精确模式,其元件可以通过标准曲线拟合技术在时域中合成。该替代表示的主要优点是减小处理时间,因为三相线的频率相关模态变换矩阵具有在时域中表示的九个元素,而两相线的模态变换矩阵仅具有四个元素。本文示出了具有垂直对称平面的非转换三相线的模态分解过程和具有垂直对称平面的垂直对称平面,其标称电压为440 kV和线长度为500km。

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