Electromagnetic power transmission through two cyl-inder-penetrated circular apertures in parallel conducting planes is studied. The Weber transform and superposition principle are used to represent the scattered field. A set of simultaneous equations for the modal coefficients are constituted based on the mode-matching and boundary conditions. The whole integration path is slightly deformed into a new one below the positive real axis not to pass through the pole singularities encountered on the original path so that it is easily calculated by direct numerical quadrature. Computation shows the behaviors of power transmission in terms of aperture geometry and wavelength. The presented scheme is very amenable to numerical evaluations and useful for various electromagnetic scattering and antenna radiation analysis involved with singularity problems.
Young Seung LEE
ETRI
Seung Keun PARK
ETRI
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Young Seung LEE, Seung Keun PARK, "Electromagnetic Power Transmission through Two Circular Apertures in Parallel Conducting Planes Penetrated by a Long Cylinder" in IEICE TRANSACTIONS on Communications,
vol. E96-B, no. 10, pp. 2455-2461, October 2013, doi: 10.1587/transcom.E96.B.2455.
Abstract: Electromagnetic power transmission through two cyl-inder-penetrated circular apertures in parallel conducting planes is studied. The Weber transform and superposition principle are used to represent the scattered field. A set of simultaneous equations for the modal coefficients are constituted based on the mode-matching and boundary conditions. The whole integration path is slightly deformed into a new one below the positive real axis not to pass through the pole singularities encountered on the original path so that it is easily calculated by direct numerical quadrature. Computation shows the behaviors of power transmission in terms of aperture geometry and wavelength. The presented scheme is very amenable to numerical evaluations and useful for various electromagnetic scattering and antenna radiation analysis involved with singularity problems.
URL: https://global.ieice.org/en_transactions/communications/10.1587/transcom.E96.B.2455/_p
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@ARTICLE{e96-b_10_2455,
author={Young Seung LEE, Seung Keun PARK, },
journal={IEICE TRANSACTIONS on Communications},
title={Electromagnetic Power Transmission through Two Circular Apertures in Parallel Conducting Planes Penetrated by a Long Cylinder},
year={2013},
volume={E96-B},
number={10},
pages={2455-2461},
abstract={Electromagnetic power transmission through two cyl-inder-penetrated circular apertures in parallel conducting planes is studied. The Weber transform and superposition principle are used to represent the scattered field. A set of simultaneous equations for the modal coefficients are constituted based on the mode-matching and boundary conditions. The whole integration path is slightly deformed into a new one below the positive real axis not to pass through the pole singularities encountered on the original path so that it is easily calculated by direct numerical quadrature. Computation shows the behaviors of power transmission in terms of aperture geometry and wavelength. The presented scheme is very amenable to numerical evaluations and useful for various electromagnetic scattering and antenna radiation analysis involved with singularity problems.},
keywords={},
doi={10.1587/transcom.E96.B.2455},
ISSN={1745-1345},
month={October},}
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TY - JOUR
TI - Electromagnetic Power Transmission through Two Circular Apertures in Parallel Conducting Planes Penetrated by a Long Cylinder
T2 - IEICE TRANSACTIONS on Communications
SP - 2455
EP - 2461
AU - Young Seung LEE
AU - Seung Keun PARK
PY - 2013
DO - 10.1587/transcom.E96.B.2455
JO - IEICE TRANSACTIONS on Communications
SN - 1745-1345
VL - E96-B
IS - 10
JA - IEICE TRANSACTIONS on Communications
Y1 - October 2013
AB - Electromagnetic power transmission through two cyl-inder-penetrated circular apertures in parallel conducting planes is studied. The Weber transform and superposition principle are used to represent the scattered field. A set of simultaneous equations for the modal coefficients are constituted based on the mode-matching and boundary conditions. The whole integration path is slightly deformed into a new one below the positive real axis not to pass through the pole singularities encountered on the original path so that it is easily calculated by direct numerical quadrature. Computation shows the behaviors of power transmission in terms of aperture geometry and wavelength. The presented scheme is very amenable to numerical evaluations and useful for various electromagnetic scattering and antenna radiation analysis involved with singularity problems.
ER -