The radiation characteristics of a rectangular waveguide with a flange coated with an absorbing material is studied. The impedance boundary condition is applied at the surface of the coated flange. From the numerical results, it is found that the coated flange reduces the maximum amplitude of the radiation field and makes the half-power beamwidth narrow in the E-plane.
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Kuniaki YOSHITOMI, Takeshi MOMII, "Radiation from a Rectangular Waveguide with a Coated Flange" in IEICE TRANSACTIONS on transactions,
vol. E73-E, no. 4, pp. 465-467, April 1990, doi: .
Abstract: The radiation characteristics of a rectangular waveguide with a flange coated with an absorbing material is studied. The impedance boundary condition is applied at the surface of the coated flange. From the numerical results, it is found that the coated flange reduces the maximum amplitude of the radiation field and makes the half-power beamwidth narrow in the E-plane.
URL: https://global.ieice.org/en_transactions/transactions/10.1587/e73-e_4_465/_p
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@ARTICLE{e73-e_4_465,
author={Kuniaki YOSHITOMI, Takeshi MOMII, },
journal={IEICE TRANSACTIONS on transactions},
title={Radiation from a Rectangular Waveguide with a Coated Flange},
year={1990},
volume={E73-E},
number={4},
pages={465-467},
abstract={The radiation characteristics of a rectangular waveguide with a flange coated with an absorbing material is studied. The impedance boundary condition is applied at the surface of the coated flange. From the numerical results, it is found that the coated flange reduces the maximum amplitude of the radiation field and makes the half-power beamwidth narrow in the E-plane.},
keywords={},
doi={},
ISSN={},
month={April},}
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TY - JOUR
TI - Radiation from a Rectangular Waveguide with a Coated Flange
T2 - IEICE TRANSACTIONS on transactions
SP - 465
EP - 467
AU - Kuniaki YOSHITOMI
AU - Takeshi MOMII
PY - 1990
DO -
JO - IEICE TRANSACTIONS on transactions
SN -
VL - E73-E
IS - 4
JA - IEICE TRANSACTIONS on transactions
Y1 - April 1990
AB - The radiation characteristics of a rectangular waveguide with a flange coated with an absorbing material is studied. The impedance boundary condition is applied at the surface of the coated flange. From the numerical results, it is found that the coated flange reduces the maximum amplitude of the radiation field and makes the half-power beamwidth narrow in the E-plane.
ER -