Legendre fit to the reflection coefficient of a radiating rectangular waveguide aperture

We accurately calculate the reflection coefficient and normalized admittance of radiating open-ended rectangular waveguides and fit our results with a linear combination of Legendre polynomials. We verify the expression to an accuracy of 0.005 with other calculations and examine the impact of flange...

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Main Authors: Williams, Dylan F., Weikle, Robert M., Ghasr, Mohammad Tayeb, Alpert, Bradley, Shen, Zhongxiang, Arsenovic, Alexander, Zoughi, Reza
Other Authors: School of Electrical and Electronic Engineering
Format: Journal Article
Language:English
Published: 2013
Subjects:
Online Access:https://hdl.handle.net/10356/97633
http://hdl.handle.net/10220/11269
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author Williams, Dylan F.
Weikle, Robert M.
Ghasr, Mohammad Tayeb
Alpert, Bradley
Shen, Zhongxiang
Arsenovic, Alexander
Zoughi, Reza
author2 School of Electrical and Electronic Engineering
author_facet School of Electrical and Electronic Engineering
Williams, Dylan F.
Weikle, Robert M.
Ghasr, Mohammad Tayeb
Alpert, Bradley
Shen, Zhongxiang
Arsenovic, Alexander
Zoughi, Reza
author_sort Williams, Dylan F.
collection NTU
description We accurately calculate the reflection coefficient and normalized admittance of radiating open-ended rectangular waveguides and fit our results with a linear combination of Legendre polynomials. We verify the expression to an accuracy of 0.005 with other calculations and examine the impact of flanges and burrs on the accuracy to which the reflection coefficient can be approximated in practice.
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spelling ntu-10356/976332020-03-07T13:57:23Z Legendre fit to the reflection coefficient of a radiating rectangular waveguide aperture Williams, Dylan F. Weikle, Robert M. Ghasr, Mohammad Tayeb Alpert, Bradley Shen, Zhongxiang Arsenovic, Alexander Zoughi, Reza School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering We accurately calculate the reflection coefficient and normalized admittance of radiating open-ended rectangular waveguides and fit our results with a linear combination of Legendre polynomials. We verify the expression to an accuracy of 0.005 with other calculations and examine the impact of flanges and burrs on the accuracy to which the reflection coefficient can be approximated in practice. 2013-07-12T02:40:00Z 2019-12-06T19:44:47Z 2013-07-12T02:40:00Z 2019-12-06T19:44:47Z 2012 2012 Journal Article Williams, D. F., Ghasr, M. T., Alpert, B., Shen, Z., Arsenovic, A., Weikle, R. M., et al. (2012). Legendre fit to the reflection coefficient of a radiating rectangular waveguide aperture. IEEE Transactions on Antennas and Propagation, 60(8), 4009-4014. https://hdl.handle.net/10356/97633 http://hdl.handle.net/10220/11269 10.1109/TAP.2012.2201106 en IEEE transactions on antennas and propagation © 2012 IEEE.
spellingShingle DRNTU::Engineering::Electrical and electronic engineering
Williams, Dylan F.
Weikle, Robert M.
Ghasr, Mohammad Tayeb
Alpert, Bradley
Shen, Zhongxiang
Arsenovic, Alexander
Zoughi, Reza
Legendre fit to the reflection coefficient of a radiating rectangular waveguide aperture
title Legendre fit to the reflection coefficient of a radiating rectangular waveguide aperture
title_full Legendre fit to the reflection coefficient of a radiating rectangular waveguide aperture
title_fullStr Legendre fit to the reflection coefficient of a radiating rectangular waveguide aperture
title_full_unstemmed Legendre fit to the reflection coefficient of a radiating rectangular waveguide aperture
title_short Legendre fit to the reflection coefficient of a radiating rectangular waveguide aperture
title_sort legendre fit to the reflection coefficient of a radiating rectangular waveguide aperture
topic DRNTU::Engineering::Electrical and electronic engineering
url https://hdl.handle.net/10356/97633
http://hdl.handle.net/10220/11269
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