A Subgridding Scheme Based on the FDTD Method and HIE-FDTD Method
关键词:
A Subgridding Scheme Based on the FDTD Method and HIE-FDTD Method摘要
To reduce the computer memory and time of the finite-difference time-domain (FDTD) method when the problems are simulated with fine structural features, the subgridding scheme that applies higher resolution only around critical areas is often used. In this paper, a new subgridding scheme is proposed which is based on the hybrid implicit-explicit finite-difference time-domain (HIE-FDTD) method and FDTD algorithm. The field components in fine local grids are updated using the HIE-FDTD method, and in the coarse main grids conventional FDTD method is utilized. Due to the weakly conditional stability of the HIE-FDTD method, the technique achieves the same time marching step in the whole domain as employed in the coarse FDTD scheme, and the need for the temporal interpolation of the fields in the fine grids is obviated, hence, the hybrid HIE-FDTD subgridding scheme is less time consuming and easy to implement. Practical application of hybrid algorithm in the simulation of the shielding effectiveness of an enclosure is reported.
##plugins.generic.usageStats.downloads##
参考
K. S. Yee, “Numerical Solution of Initial
Boundary Value Problems Involving
Maxwell’s Equations in Isotropic Media,” IEEE Trans. Antennas Propagat., vol. 14, pp.
-307, May 1966.
D. T. Prescott and N. V. Shuley, “A Method
for Incorporating Different Sized Cells Into
the Finite-Difference Time-Domain Analysis
Technique,” IEEE Microwave Guided Wave
Lett., vol. 2, pp. 434-436, Nov. 1992.
M. W. Chevalier, R. J. Luebbers, and V. P.
Cable, “FDTD Local Grid with Material
Traverse,” IEEE Trans. Antennas Propagat,
vol. 45, pp. 411-421, Mar. 1997.
M. Okoniewski, E. Okoniewska, and M. A.
Stuchly, “Three-Dimensional Subgridding
Algorithm for FDTD,” IEEE Trans.
Antennas Propagat., vol. 45, pp. 422-429,
Mar. 1997.
I. Ahmed and Z. Chen, “A Hybrid
ADI-FDTD Subgridding Scheme for
Efficient Electromagnetic Computation,”
International Journal of Numerical
Modeling, Electronic networks, devices and
fields, vol. 17, pp. 237-249, Jan. 2004.
A. Monorchio and R. Mittra, “Time-Domain
(FE/FDTD) Technique for Solving Complex
Electromagnetic Problems,” IEEEE
Microwave Guided Wave Lett., vol. 8, pp.
-95, Feb. 1998.
S. Wang, “Numerical Examinations of the
Stability of FDTD Subgridding Schemes,”
The Applied Computational
Electromagnetics Society (ACES) Journal,
vol. 22, pp. 189-194, 2007.
J. Chen and J. Wang, “A 3-D Hybrid
Implicit-Explicit FDTD Scheme with
Weakly Conditional Stability,” Microwave
Opt. Technol. Lett., vol. 48, pp. 2291-2294,
Nov. 2006.
J. Chen and J. Wang, “Comparison between
HIE-FDTD Method and ADI-FDTD
Method,” Microwave Opt. Technol. Lett.,
vol. 49, pp. 1001-1005, May 2007.
J. Chen and J. Wang, “A Three-Dimensional
Semi-Implicit FDTD Scheme for Calculation
of Shielding Effectiveness of Enclosure with
Thin Slots,” IEEE Trans. Electromagn.
Compat., vol. 49, pp. 419-426, Feb. 2007.
I. Ahmed and E. Li, “Conventional Perfectly
Matched Layer for Weakly Conditionally
Stable Hybrid Implicit and Explicit-FDTD
Method,” Microwave Opt. Technol. Lett.,
vol. 49, pp. 3106-3109, Dec. 2007.
J. Chen and J. Wang, “Numerical Simulation
using HIE–FDTD Method to Estimate
Various Antennas with Fine Scale
Structures,” IEEE Trans. Antennas
Propagat., vol. 55, pp. 3603-3612, Dec.


