A performance-enhancing modification to the convolutional perfectly matched layer (CPML) technique for implementing the complex frequency-shifted perfectly matched layer (CFS-PML) absorbing boundary condition is presented. By adopting this modification, an apparent discrepancy in the time synchronization between the CPML and the main finite-difference time-domain (FDTD) algorithm is resolved. This is achieved by employing a semi-implicit approach that synchronizes CPML with the main FDTD algorithm. It is shown through 2-D and 3-D numerical examples that the suggested modification to the CPML algorithm increases its performance without increasing its computational cost
The Perfectly Matched Layer (PML) has recently been introduced by Berenger as a material absorbing b...
The family of PML boundary conditions remains important not only to standard FDTD but also to new an...
The application of the Finite Difference Time Domain (FDTD) method to open region radiation problems...
The convolutional perfectly matched layer (CPML) is currently, perhaps, the most efficient type of a...
Key Terms: finite-difference time-domain (FDTD), perfectly matched layer (PML), stretched coordinat...
In this dissertation, two methods for improving Finite-Difference Time-Domain (FDTD) simulations o...
We present the convolutional perfectly matched layer (CPML) absorbing boundary condition (ABC) for f...
Die vorliegende Arbeit behandelt den Einsatz der Perfectly-Matched-Layer (PML) absorbierenden Randbe...
We investigate the spectral properties of the Cartesian, cylindrical, and spherical perfect matched ...
本文将复频率参数完全匹配层(Complex Frequency Shifted Perfectly Matched Layer,CFS-PML)吸收边界应用到瞬变电磁法(Transient Elect...
In this paper, we present a two-step convolutional perfectly matched layer (CPML) absorbing boundary...
105 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.In this dissertation the idea...
105 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.In this dissertation the idea...
Abstract—A general time domain representation of the Chew and Weedon [1994] stretched coordinate per...
Based on the uniaxial anisotropic perfectly matched layer (UPML) with multi-poles, unsplit-field imp...
The Perfectly Matched Layer (PML) has recently been introduced by Berenger as a material absorbing b...
The family of PML boundary conditions remains important not only to standard FDTD but also to new an...
The application of the Finite Difference Time Domain (FDTD) method to open region radiation problems...
The convolutional perfectly matched layer (CPML) is currently, perhaps, the most efficient type of a...
Key Terms: finite-difference time-domain (FDTD), perfectly matched layer (PML), stretched coordinat...
In this dissertation, two methods for improving Finite-Difference Time-Domain (FDTD) simulations o...
We present the convolutional perfectly matched layer (CPML) absorbing boundary condition (ABC) for f...
Die vorliegende Arbeit behandelt den Einsatz der Perfectly-Matched-Layer (PML) absorbierenden Randbe...
We investigate the spectral properties of the Cartesian, cylindrical, and spherical perfect matched ...
本文将复频率参数完全匹配层(Complex Frequency Shifted Perfectly Matched Layer,CFS-PML)吸收边界应用到瞬变电磁法(Transient Elect...
In this paper, we present a two-step convolutional perfectly matched layer (CPML) absorbing boundary...
105 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.In this dissertation the idea...
105 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.In this dissertation the idea...
Abstract—A general time domain representation of the Chew and Weedon [1994] stretched coordinate per...
Based on the uniaxial anisotropic perfectly matched layer (UPML) with multi-poles, unsplit-field imp...
The Perfectly Matched Layer (PML) has recently been introduced by Berenger as a material absorbing b...
The family of PML boundary conditions remains important not only to standard FDTD but also to new an...
The application of the Finite Difference Time Domain (FDTD) method to open region radiation problems...