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Extension and validation of a perfectly matched layer formulation for the unconditionally stable D-H FDTD method

机译:无条件稳定的D-H FDTD方法的完美匹配层配方的扩展和验证

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摘要

In this letter, a modification to the recently proposed unconditionally stable D-H ADI FDTD method is presented that considerably reduces the late-time error induced by the corner cells. The PML boundary is derived from the direct discretization of the modified D-H Maxwell's equations rather than the superposition of uniaxial PML boundaries. An optimal choice of the PML conductivity profile coefficients is proposed. Results show that the reflection error of the PML is limited for increased time step size beyond the Courant-Friedrichs-Lewy stability bound, and maximum reflection errors are 15 to 20 dB lower than the original formulation.
机译:在这封信中,提出了对最近提出的无条件稳定的D-H ADI FDTD方法的修改,该修改可显着减少角落单元引起的后期误差。 PML边界源自修改后的D-H Maxwell方程的直接离散化,而不是单轴PML边界的叠加。提出了PML电导率分布系数的最佳选择。结果表明,超出库伦特-弗里德里希斯-路易​​稳定性界限的时间步长增加,PML的反射误差受到限制,并且最大反射误差比原始配方低15至20 dB。

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