Calculation of the Lightning Induced Response on Overhead Transmission Lines based on the Electric Field Representation Methods

Jun Guo, Yan-zhao Xie
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Abstract

The transient electromagnetic field produced by an indirect lightning can induce to overhead power lines, which may cause serious effects to the power system. When calculating the lightning induced voltages on the overhead lines with the conventional numerical method, to pursue a sufficiently accurate results, the lightning electric field at a large number of observation points along the lines should be calculated. However, since the numerical integration are commonly involved when calculating the lightning electric field, the significant CPU cost is normally required for the whole computational procedure. In order to enhance the computational efficiency, two approaches which based on the electric field representation technique were proposed. In these two methods, the lightning electric fields at several observation points along the line are calculated by using the conventional numerical method first, then the electric field along the entire line can be represented with the continuous functions by using two different fitting methods, which are matrix pencil method (MPM) and the least squares-nonlinear least squares (LS-NLS) method. As a result, the necessary number of observation points where the lightning electric field should be calculated by using the conventional numerical methods is significantly decreased. The proposed methods were validated and compared by some numerical examples.
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基于电场表示法的架空输电线路雷击感应响应计算
间接雷击产生的瞬变电磁场会对架空输电线路产生感应,对电力系统造成严重影响。在用常规数值方法计算架空线路上的雷击感应电压时,为了获得足够精确的结果,需要计算线路沿线大量观测点处的雷击电场。然而,由于闪电电场计算通常涉及数值积分,整个计算过程通常需要大量的CPU成本。为了提高计算效率,提出了两种基于电场表示技术的方法。在这两种方法中,首先采用常规数值方法计算沿线多个观测点的闪电电场,然后采用矩阵铅笔法(MPM)和最小二乘-非线性最小二乘(LS-NLS)两种不同的拟合方法,将沿线的电场用连续函数表示出来。因此,用常规数值方法计算雷电电场所需的观测点数量大大减少。通过数值算例对所提方法进行了验证和比较。
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