Cite this article:
Wang Yue, Wang Jian-Guo, Chen Zai-Gao. Uniform stable conformal convolutional perfectly matched layer for enlarged cell technique conformal finite-difference time-domain methodJ. Chin. Phys. B, 2015, 24(2): 024101.
| Wang Yue, Wang Jian-Guo, Chen Zai-Gao. Uniform stable conformal convolutional perfectly matched layer for enlarged cell technique conformal finite-difference time-domain methodJ. Chin. Phys. B, 2015, 24(2): 024101. |
Uniform stable conformal convolutional perfectly matched layer for enlarged cell technique conformal finite-difference time-domain method
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Abstract
Based on conformal construction of physical model in a three-dimensional Cartesian grid, an integral-based conformal convolutional perfectly matched layer (CPML) is given for solving the truncation problem of the open port when the enlarged cell technique conformal finite-difference time-domain (ECT-CFDTD) method is used to simulate the wave propagation inside a perfect electric conductor (PEC) waveguide. The algorithm has the same numerical stability as the ECT-CFDTD method. For the long-time propagation problems of an evanescent wave in a waveguide, several numerical simulations are performed to analyze the reflection error by sweeping the constitutive parameters of the integral-based conformal CPML. Our numerical results show that the integral-based conformal CPML can be used to efficiently truncate the open port of the waveguide. -
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