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首页> 外文期刊>Electromagnetics >Compact finite difference time domain absorbing boundary conditions for electrically large waveguide modeling
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Compact finite difference time domain absorbing boundary conditions for electrically large waveguide modeling

机译:大型电波导模型的紧凑有限时域吸收边界条件

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摘要

This work extends a previous effort in optimizing the compact finite difference time domain algorithm for modeling electrically large waveguides by investigating the effect of their electrical size on perfectly matched layer absorbing boundary conditions. Sensitivity analysis is conducted via an optimization procedure where actual finite difference time domain simulations serve as input, and optimum perfectly matched layer parameters serve as output. This analysis affirms a critical need to vary the perfectly matched layer parameters, as the waveguide's operating frequency renders it electrically large. Both uniaxial and convolutional perfectly matched layer formulations are investigated, and analysis is extended to a high-order form of the compact finite difference time domain algorithm, with a further outgoing wave absorption of typically 20-40 dB being achieved.
机译:这项工作通过研究电尺寸对完全匹配的层吸收边界条件的影响,扩展了先前的工作,从而优化了用于对电大波导建模的紧凑型有限差分时域算法。灵敏度分析是通过优化程序进行的,其中,实际的有限差分时域仿真用作输入,而最佳的完美匹配层参数用作输出。该分析肯定了改变波导层的完美匹配参数的迫切需要,因为波导的工作频率使其电性能大。研究了单轴和卷积完美匹配的层公式,并将分析扩展到紧凑型有限差分时域算法的高阶形式,进一步实现了典型的20-40 dB的输出波吸收。

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