Title :
Flexible subgrids in FDTD calculations
Author :
Mayer, Frank ; Schuhmann, Rolf ; Weiland, Thomas
Author_Institution :
Theorie Eektromagnetischer Felder, Technische Univ. Darmstadt, Germany
Abstract :
A very prosperous method for numerical simulations of electromagnetic field problems is the finite integration technique (FIT) which in time domain and with cartesian grids is computationally equivalent to the finite difference time domain (FDTD) method. To resolve geometrical details very accurately in an orthogonal grid without resolving the mesh in the whole domain subgrids are very useful. A subgridding scheme which allows the refinement of the mesh in arbitrary sub-domains is presented. The so-called flexible subgrids are proposed for 3D time domain calculations. The iteration scheme for FIT time domain calculations is consistently extended to the calculation domain including subgrids. The stability conditions are proven for the extended system and it is shown that the subgrid produces very few numerical reflections.
Keywords :
electromagnetic fields; finite difference time-domain analysis; integration; iterative methods; numerical stability; resonators; 3D time domain calculations; FDTD calculations; FDTD method; FIT time domain calculations; cartesian grids; electromagnetic field problems; finite difference time domain method; finite integration technique; flexible subgrids; iteration scheme; numerical reflections; numerical simulations; orthogonal grid; resonator; stability conditions; Electromagnetic fields; Finite difference methods; Grid computing; Interpolation; Maxwell equations; Numerical simulation; Reflection; Stability; Time domain analysis; Voltage;
Conference_Titel :
Antennas and Propagation Society International Symposium, 2002. IEEE
Print_ISBN :
0-7803-7330-8
DOI :
10.1109/APS.2002.1018203