On the use of wavelet transform for efficient iterative solution of the electromagnetic models in lightning studies

A. Geranmayeh, R. Moini, S. Sadeghi
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Abstract

The lightning return-stroke channel is commonly approximated as a straight thin-wire antenna over perfect ground for which the numerical solution of the governing electric field integral equation by the conventional method of moment is prohibitively slow. In this paper, first, a fast discrete wavelet transform is used to compress the Fourier spectrum of the excitation. An appropriate predefined wavelet packet basis transform is, then, employed to effectively sparsify the resulting matrix equations for the entire frequency range of interest. Finally, the conjugate gradient method with wavelet-based preconditioning is exploited to reduce the memory space and processor cycles of the simulation process
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小波变换在雷电研究中电磁模型有效迭代求解中的应用
雷电回击通道通常近似为完美地上的直细线天线,其控制电场积分方程的传统矩量法数值解非常缓慢。本文首先采用快速离散小波变换对激励的傅里叶谱进行压缩。然后,采用适当的预定义小波包基变换来有效地稀疏整个感兴趣频率范围的结果矩阵方程。最后,利用基于小波预处理的共轭梯度法减少了仿真过程的内存空间和处理器周期
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