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Bilinear Z-transform perfectly matched layer for rotational symmetric microwave structures with magnetised ferrite

机译:Bilinear Z-Transfort完美匹配的旋转对称微波结构与磁化铁氧体的层

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摘要

In order to efficiently simulate the symmetrical structures in the cylindrical coordinate system, the implementation of the complex frequency-shifted perfectly matched layer based on the body of revolution finite-difference time-domain algorithm is proposed for analysing the magnetised ferrite microwave structures. To improve the computational efficiency in the magnetised ferrite domain compared with the existing calculation methods, the bilinear Z-transform for the simulation of the dispersion relationship of the magnetised ferrite is proposed. The proposed implementations can not only improve the computational efficiency but also obtain a considerable absorbing performance. Numerical examples based on the magnetised ferrite microwave structures are carried out to demonstrate the effectiveness and efficiency of the proposed formulations.
机译:为了有效地模拟圆柱形坐标系中的对称结构,提出了基于转速有限差分时域算法的复频移位的完全匹配层的实现,用于分析磁化铁氧体微波结构。为了提高磁化铁氧体结构域的计算效率与现有的计算方法相比,提出了用于模拟磁化铁氧体的分散关系的双线性Z变换。建议的实施方案不仅可以提高计算效率,还可以获得相当大的吸收性能。进行了基于磁化铁氧体微波结构的数值示例,以证明所提出的制剂的有效性和效率。

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