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Application of the lumped parameter line model to simulate electromagnetic transients in three-phase transmission lines with vertical symmetry

机译:应用集总参数模型模拟电磁瞬变三相输电线路与垂直的对称

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摘要

In this paper, we propose a transmission line model to represent three-phase untransposed transmission lines with vertical symmetry. Here, we decouple a transmission line into its propagation modes using Concordia's matrix, which is the proper orthogonal form of Clarke's matrix that has its columns normalised. Due to the usage of Concordia's matrix, the transmission line is decoupled into two coupled modes and one uncoupled mode. We represent the uncoupled mode by a single-phase transmission line, and the coupled modes by a two-phase transmission line without vertical symmetry. We compute voltages and currents for the single-phase transmission line using the classic Lumped Parameter Model. Voltages and currents in the two-phase transmission line are calculated using a cascade of coupled L circuits pairs. Modal voltages and currents are then transformed back to the phase domain. We compare the results obtained with the proposed model to those obtained with two well-known time domain models, the classic modal lumped parameter model and the lumped parameter model available in the Alternate Transients Program ATP. Results show that the proposed model agrees with time-domain models and has the advantage that is developed in the time domain without needing any inverse transformations.
机译:在本文中,我们提出一个输电线路模型来表示三相untransposed输电线路与垂直对称。我们分离传输线到它传播模式使用Concordia的矩阵是适当的正交矩阵形式的克拉克它的列正常化。肯考迪娅的矩阵,输电线路解耦成两个耦合模式和一个非耦合模式。由单相输电线路,耦合模式由一个两阶段输电线路没有垂直对称。单相传输和电流使用经典的集总参数模型。两相电压和电流使用级联传输线计算的耦合双L电路。然后电流转换阶段域。提出的模型可以同两个著名的时域模型,经典的模态集中参数模型和集总参数模型可用的替代瞬变程序ATP。同意,时域模型开发优势,在时域不需要任何反向转换。

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