Paper Abstract and Keywords |
Presentation |
2010-10-28 09:30
Scattering analysis of electromagnetic wave for a dielectric cylinder by CIP method. Hiroyuki Terashima, Tetsuo Maruyama, Shinjiro Hironaka, Hiroshi Maeda (FIT) OCS2010-52 OPE2010-88 LQE2010-61 Link to ES Tech. Rep. Archives: OPE2010-88 LQE2010-61 |
Abstract |
(in Japanese) |
(See Japanese page) |
(in English) |
FDTD method is most popularly used for analysis of electromagnetic wave propagation.
However, FDTD tends to show error due to finite difference approximation using electromagnetic field data on discrete grid.
Also, special boundary condition to absorb outgoing wave must be set up on the end of analyzing region.
Recently, CIP method is paid attention for its accuracy, because it solves hyperbolic advection equation based on data and its derivatives on grid.
By applying CIP method to electromagnetic field analysis, improvement on precision would be expected.
In this report, electromagnetic wave scattering by a dielectric cylinder situated in free space was demonstrated by analytical approximated method, FDTD method and CIP method.
The total field is compared for typical dielectric constants.
In evaluation for field intensity by cross-correlation using analytical approximated method as reference, CIP showed better results than FDTD in all case. |
Keyword |
(in Japanese) |
(See Japanese page) |
(in English) |
CIP Method / FDTD Method / Analytical Approximated Method / Dielectric Cylinder / Electromagnetic Wave Scattering / Photonic Crystal / / |
Reference Info. |
IEICE Tech. Rep., vol. 110, no. 258, OPE2010-88, pp. 1-6, Oct. 2010. |
Paper # |
OPE2010-88 |
Date of Issue |
2010-10-21 (OCS, OPE, LQE) |
ISSN |
Print edition: ISSN 0913-5685 Online edition: ISSN 2432-6380 |
Copyright and reproduction |
All rights are reserved and no part of this publication may be reproduced or transmitted in any form or by any means, electronic or mechanical, including photocopy, recording, or any information storage and retrieval system, without permission in writing from the publisher. Notwithstanding, instructors are permitted to photocopy isolated articles for noncommercial classroom use without fee. (License No.: 10GA0019/12GB0052/13GB0056/17GB0034/18GB0034) |
Download PDF |
OCS2010-52 OPE2010-88 LQE2010-61 Link to ES Tech. Rep. Archives: OPE2010-88 LQE2010-61 |
Conference Information |
Committee |
LQE OPE OCS |
Conference Date |
2010-10-28 - 2010-10-29 |
Place (in Japanese) |
(See Japanese page) |
Place (in English) |
Mojiko Retro Town, Minato house |
Topics (in Japanese) |
(See Japanese page) |
Topics (in English) |
Ultrafast transmission,signal processing/modulation-demodulation/wideband amplification,WDM technology/light emitting-receiving device/high power light delivery/etc(report on ECOC) |
Paper Information |
Registration To |
OPE |
Conference Code |
2010-10-LQE-OPE-OCS |
Language |
Japanese |
Title (in Japanese) |
(See Japanese page) |
Sub Title (in Japanese) |
(See Japanese page) |
Title (in English) |
Scattering analysis of electromagnetic wave for a dielectric cylinder by CIP method. |
Sub Title (in English) |
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Keyword(1) |
CIP Method |
Keyword(2) |
FDTD Method |
Keyword(3) |
Analytical Approximated Method |
Keyword(4) |
Dielectric Cylinder |
Keyword(5) |
Electromagnetic Wave Scattering |
Keyword(6) |
Photonic Crystal |
Keyword(7) |
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Keyword(8) |
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1st Author's Name |
Hiroyuki Terashima |
1st Author's Affiliation |
Fukuoka Institute of Technology (FIT) |
2nd Author's Name |
Tetsuo Maruyama |
2nd Author's Affiliation |
Fukuoka Institute of Technology (FIT) |
3rd Author's Name |
Shinjiro Hironaka |
3rd Author's Affiliation |
Fukuoka Institute of Technology (FIT) |
4th Author's Name |
Hiroshi Maeda |
4th Author's Affiliation |
Fukuoka Institute of Technology (FIT) |
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Speaker |
Author-1 |
Date Time |
2010-10-28 09:30:00 |
Presentation Time |
25 minutes |
Registration for |
OPE |
Paper # |
OCS2010-52, OPE2010-88, LQE2010-61 |
Volume (vol) |
vol.110 |
Number (no) |
no.257(OCS), no.258(OPE), no.259(LQE) |
Page |
pp.1-6 |
#Pages |
6 |
Date of Issue |
2010-10-21 (OCS, OPE, LQE) |
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