Title :
Direct
-Transform Implementation of the CFS-PML Based on Memory-Minimized Method
Author :
Naixing Feng ; Yongqing Yue ; Qing Huo Liu
Author_Institution :
Inst. of Electromagn. & Acoust., Xiamen Univ., Xiamen, China
Abstract :
Efficient and unsplit-field-based stretched coordinate perfectly matched layer (PML) formulations with the complex frequency-shifted (CFS) scheme that combine the memory-minimized method (Tri-M) and the direct Z-transform (DZT) method are proposed to truncate the finite-difference time-domain lattices. The proposed algorithm takes advantage of the minimized memory of the Tri-M method, the optimal accuracy of the DZT method, and the capacity of the PML for attenuating evanescent waves and reducing late-time reflections. Three 3-D numerical simulations have been carried out to validate the proposed formulations.
Keywords :
Z transforms; computational electromagnetics; electromagnetic wave attenuation; finite difference time-domain analysis; 3D numerical simulation; CFS-PML; DZT method; Tri-M method; complex frequency-shifted scheme; direct Z-transform method; evanescent wave attenuation; finite-difference time-domain lattices; late-time reflection; memory-minimized method; stretched coordinate perfectly matched layer; Absorption; Accuracy; Finite difference methods; Memory management; Perfectly matched layers; Soil; Time-domain analysis; Complex frequency-shifted perfectly matched layer (CFS-PML); direct $Z$-transform (DZT) method; finite difference time domain (FDTD); memory-minimized method (Tri-M);
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2015.2389218