- 【Updated on May 12, 2025】 Integration of CiNii Dissertations and CiNii Books into CiNii Research
- Trial version of CiNii Research Automatic Translation feature is available on CiNii Labs
- Suspension and deletion of data provided by Nikkei BP
- Regarding the recording of “Research Data” and “Evidence Data”
Performance of PML Boundary Condition for the FDTD Simulations of Printed Antennas
-
- OGAWA Junko
- Department of Electrical and Electronics Engineering, Faculty of Engineering, Chiba University
-
- MATSUZAWA Shin-ichiro
- Graduate School of Science & Technology, Chiba University
-
- ITO Koichi
- Department of Electrical and Electronics Engineering, Faculty of Engineering, Chiba University
Bibliographic Information
- Other Title
-
- プリントアンテナのFDTD解析におけるPML吸収境界条件の検討
Search this article
Description
The Perfectly Matched Layer (PML) concept has been introduced recently by Berenger with the objective of developing and absorbing boundary condition for the Finite-Difference Time-Domein (FDTD) method. PML boundary creates a nonphysical absorber adjacent to the outer grid boundary that has a wave impedance independent of the angle of incidence and frequency of outgoing scattered waves. PML Boundary needs more memories than other ABC's, but it has a major impact as the most effective condition upon the entire FDTD modeling community. This report verifies PML Boundary is more accurate than other ABC's for printed antennas.
Journal
-
- IEICE technical report. Antennas and propagation
-
IEICE technical report. Antennas and propagation 96 (91), 1-6, 1996-06-13
The Institute of Electronics, Information and Communication Engineers
- Tweet
Details 詳細情報について
-
- CRID
- 1571698602381309696
-
- NII Article ID
- 110003247696
-
- NII Book ID
- AN10060764
-
- Text Lang
- ja
-
- Data Source
-
- CiNii Articles