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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Three-dimensional biorthogonal multiresolution time-domain method and its application to electromagnetic scattering problems
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Three-dimensional biorthogonal multiresolution time-domain method and its application to electromagnetic scattering problems

机译:三维双正交多分辨率时域方法及其在电磁散射中的应用

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A three-dimensional (3-D) multiresolution time-domain (MRTD) analysis is presented based on a biorthogonal-wavelet expansion, with application to electromagnetic-scattering problems. We employ the Cohen-Daubechies-Feauveau (CDF) biorthogonal wavelet basis, characterized by the maximum number of vanishing moments for a given support. We utilize wavelets and scaling functions of compact support, yielding update equations involving a small number of proximate field components. A detailed analysis is presented on algorithm implementation, with example numerical results compared to data computed via the conventional finite-difference time-domain (FDTD) method. It is demonstrated that for 3-D scattering problems the CDF-based MRTD often provides significant computational savings (in computer memory and run time) relative to FDTD, while retaining numerical accuracy.
机译:基于双正交小波展开,提出了三维(3-D)多分辨率时域(MRTD)分析,并将其应用于电磁散射问题。我们采用Cohen-Daubechies-Feauveau(CDF)双正交小波基,其特征是给定支撑的最大消失矩数。我们利用紧凑支持的小波和缩放函数,得出涉及少量邻近场分量的更新方程。提出了有关算法实现的详细分析,并将示例数值结果与通过常规有限差分时域(FDTD)方法计算出的数据进行了比较。事实证明,对于3-D散射问题,基于CDF的MRTD相对于FDTD通常可以提供显着的计算节省(在计算机内存和运行时间方面),同时还能保持数值精度。

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