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首页> 外文期刊>International journal of RF and microwave computer-aided engineering >Implementation of convolutional perfectly matched layer for three-dimensional hybrid implicit-explicit finite-difference time-domain method
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Implementation of convolutional perfectly matched layer for three-dimensional hybrid implicit-explicit finite-difference time-domain method

机译:三维混合隐式显式有限差分时间域方法实现卷积完美匹配的层

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摘要

The hybrid implicit-explicit (HIE) finite-difference time-domain (FDTD) method with the convolutional perfectly matched layer (CPML) is extended to a full three-dimensional scheme in this article. To demonstrate the application of the CPML better, the entire derivation process is presented, in which the fine scale structure is changed from y-direction to z-direction of the propagation innovatively. The numerical examples are adopted to verify the efficiency and accuracy of the proposed method. Numerical results show that the HIE-FDTD with CPML truncation has the similar relative reflection error with the FDTD with CPML method, but it is much better than the methods with Mur absorbing boundary. Although Courant-Friedrich-Levy number climbs to 8, the maximum relative error of the proposed HIE-CPML remains more below than -71 dB, and CPU time is nearly 72.1% less than the FDTD-CPML. As an example, a low-pass filter is simulated by using the FDTD-CPML and HIE-CPML methods. The curves obtained are highly fitted between two methods; the maximum errors are lower than -79 dB. Furthermore, the CPU time saved much more, accounting for only 26.8% of the FDTD-CPML method while the same example simulated.
机译:具有卷积完美匹配的层(CPML)的混合隐式显式(HIE)有限差分时间域(FDTD)方法延伸到本文中的全三​​维方案。为了更好地证明CPML的应用,提出了整个推导过程,其中细度结构是创新的y方向变为传播的z方向。采用数值例子来验证所提出的方法的效率和准确性。数值结果表明,具有CPML截断的HIE-FDTD具有与CPML方法的FDTD相似的相对反射误差,但它比具有诸如具有摩擦边界的方法好得多。虽然Courant-Friedrich-Levy Number爬升到8,但提出的HIE-CPML的最大相对误差仍然低于-71dB,CPU时间比FDTD-CPML低差价为近72.1%。例如,使用FDTD-CPML和HIE-CPML方法模拟低通滤波器。获得的曲线在两种方法之间高度安装;最大误差低于-79 dB。此外,CPU时间还节省了更多,仅计入FDTD-CPML方法的26.8%,而模拟相同的示例。

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