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Modeling Approach for Short-Transmission Lines on the same Tower with Different Wire Parameters and Tower Structure

机译:不同电线参数和塔结构相同塔短传输线的建模方法

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The transmission corridor is scarcity in many areas. Therefore, tower with multi-circuit transmission lines has a high proportion in the power grid. Moreover, it is common that there are short and ultrashort line, diverse tower structure and different wire parameters in multi-circuit lines. Most of the normal modeling methods for multi-circuit lines on the same tower are based on the distributed parameter model. However, they focus basically in the long lines, single type of tower structure and one kind of wire parameter. The present modeling methods cannot deal with the problem in short lines, diverse tower structure and different wire parameters. Hence, this paper proposes an approach to process this problem is proposed through studying the influence of the change of the wire parameters on the impedance/admittance matrix. The modeling approach combines the distribution parameter characteristics of tower structure and the good adaptability for short lines of the lumped parameter model. It can be applied to short lines with different tower structure and wire parameters. High accuracy of the modeling approach in this paper is verified with the measured parameters.
机译:传动走廊在许多领域稀缺。因此,具有多电路传输线的塔在电网中具有高比例。此外,很常见的是,在多电路线中存在短而超短的线,多样化的塔架结构和不同的线参数。同一塔上的多电路线的大多数正常建模方法基于分布式参数模型。但是,它们基本上专注于长线,单一类型的塔架结构和一种电线参数。本建模方法无法应对短线,多样化塔结构和不同的电线参数问题。因此,本文提出了一种方法来处理该问题,提出了通过研究在阻抗/导纳矩阵上的电线参数的变化的影响。建模方法结合了塔架结构的分布参数特征和集总参数模型的短线的良好适应性。它可以应用于具有不同塔结构和线参数的短线。本文的建模方法的高精度是用测量参数验证的。

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