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首页> 外文期刊>Microwaves, Antennas & Propagation, IET >ζ-transform-based complex envelope alternating direction implicit perfectly matched layer algorithm for modelling drude dispersive source-free wave equation finite-difference time domain applications
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ζ-transform-based complex envelope alternating direction implicit perfectly matched layer algorithm for modelling drude dispersive source-free wave equation finite-difference time domain applications

机译:基于变换的复杂包络交流方向隐式建模完全匹配的层算法,用于建模博德分散源极无源波动方程有限差分时间域应用

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摘要

In this study, Z-transform-based complex envelope alternating direction implicit wave equation perfectly matched layer (CE-ADI-WEPML) formulation is presented for modelling Drude dispersive finite-difference time domain (FDTD) applications with band-limited sources. In the proposed formulation, the constitutive relation of the dispersive medium is implemented in the FDTD algorithm by means of the bilinear Z-transform method. Numerical examples carried out in two-dimensional domains show that the proposed formulation is more accurate than the classical ADI-WEPML and also maintains the accuracy of the CE full-wave Maxwell's equations with significant reduction in the CPU time and memory storage requirements.
机译:在该研究中,Z-变换的复合包络交流方向隐式波动方程具有完全匹配的层(CE-ADI-WEPML)制剂,用于建模具有带限量源的博德分散有限差时域(FDTD)应用。在所提出的制剂中,通过双线性Z-变换方法在FDTD算法中实施分散介质的本构关系。在二维域中进行的数值示例表明,所提出的配方比经典ADI-WEPML更准确,并且还保持CE全波Maxwell方程的准确性,并在CPU时间和内存存储要求中显着降低。

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