A Wideband double ridge guide horn antenna as complex antenna transfer function standard
Ultra wideband (UWB) technology plays a significant role in wireless communication. The complex antenna transfer function (CATF) of an UWB antenna provides important information required for better channel designs and communication systems. In this dissertation the CATF of a Double ridge guide ho...
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Online Access: | http://hdl.handle.net/2263/33373 Nel, M 2013, A Wideband double ridge guide horn antenna as complex antenna transfer function standard, MEng dissertation, University of Pretoria, Pretoria, viewed yymmdd <http://hdl.handle.net/2263/33373> |
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ndltd-netd.ac.za-oai-union.ndltd.org-up-oai-repository.up.ac.za-2263-333732017-07-20T04:12:00Z A Wideband double ridge guide horn antenna as complex antenna transfer function standard Nel, Mariesa Joubert, Johan nel.mariesa@gmail.com Odendaal, J.W. (Johann Wilhelm) Double ridge guide horn antenna Complex antenna transfer function Time domain Frequency domain Compact antenna test range Anechoic chamber Standard antenna Uncertainties UCTD Ultra wideband (UWB) technology plays a significant role in wireless communication. The complex antenna transfer function (CATF) of an UWB antenna provides important information required for better channel designs and communication systems. In this dissertation the CATF of a Double ridge guide horn (DRGH) antenna is determined and used as a standard antenna for UWB measurements. Two methods were used: the two antenna method in an anechoic chamber and a modified gain-transfer method in a compact antenna test range (CATR). Measurements were performed with a vector network analyser (VNA) in the frequency domain, in the anechoic chamber and the CATR. The distance measurements required to calculate the CATF from the S-parameter measurements were performed in the time domain. The CATF of the standard antenna was determined using two identical antennas and then it was shown that a modified gain-transfer method can be used to determine the CATF of any unknown antenna in a CATR, using the standard antenna as a reference. Some of the challenges were to obtain the correct equations and measurement method to obtain the CATF in a CATR. The standard antenna was used to investigate uncertainty contributions for the measurements in the CATR. Dissertation (MEng)--University of Pretoria, 2013. gm2014 Electrical, Electronic and Computer Engineering unrestricted 2014-02-11T05:15:17Z 2014-02-11T05:15:17Z 2013-09-04 2013 Dissertation http://hdl.handle.net/2263/33373 Nel, M 2013, A Wideband double ridge guide horn antenna as complex antenna transfer function standard, MEng dissertation, University of Pretoria, Pretoria, viewed yymmdd <http://hdl.handle.net/2263/33373> E13/9/1019/gm en © 2013 University of Pretoria. All rights reserved. The copyright in this work vests in the University of Pretoria. No part of this work may be reproduced or transmitted in any form or by any means, without the prior written permission of the University of Pretoria. |
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en |
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topic |
Double ridge guide horn antenna Complex antenna transfer function Time domain Frequency domain Compact antenna test range Anechoic chamber Standard antenna Uncertainties UCTD |
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Double ridge guide horn antenna Complex antenna transfer function Time domain Frequency domain Compact antenna test range Anechoic chamber Standard antenna Uncertainties UCTD Nel, Mariesa A Wideband double ridge guide horn antenna as complex antenna transfer function standard |
description |
Ultra wideband (UWB) technology plays a significant role in wireless communication. The
complex antenna transfer function (CATF) of an UWB antenna provides important
information required for better channel designs and communication systems. In this
dissertation the CATF of a Double ridge guide horn (DRGH) antenna is determined and
used as a standard antenna for UWB measurements. Two methods were used: the two
antenna method in an anechoic chamber and a modified gain-transfer method in a compact
antenna test range (CATR). Measurements were performed with a vector network analyser
(VNA) in the frequency domain, in the anechoic chamber and the CATR. The distance
measurements required to calculate the CATF from the S-parameter measurements were
performed in the time domain. The CATF of the standard antenna was determined using
two identical antennas and then it was shown that a modified gain-transfer method can be
used to determine the CATF of any unknown antenna in a CATR, using the standard
antenna as a reference. Some of the challenges were to obtain the correct equations and
measurement method to obtain the CATF in a CATR. The standard antenna was used to
investigate uncertainty contributions for the measurements in the CATR. === Dissertation (MEng)--University of Pretoria, 2013. === gm2014 === Electrical, Electronic and Computer Engineering === unrestricted |
author2 |
Joubert, Johan |
author_facet |
Joubert, Johan Nel, Mariesa |
author |
Nel, Mariesa |
author_sort |
Nel, Mariesa |
title |
A Wideband double ridge guide horn antenna as complex antenna transfer function standard |
title_short |
A Wideband double ridge guide horn antenna as complex antenna transfer function standard |
title_full |
A Wideband double ridge guide horn antenna as complex antenna transfer function standard |
title_fullStr |
A Wideband double ridge guide horn antenna as complex antenna transfer function standard |
title_full_unstemmed |
A Wideband double ridge guide horn antenna as complex antenna transfer function standard |
title_sort |
wideband double ridge guide horn antenna as complex antenna transfer function standard |
publishDate |
2014 |
url |
http://hdl.handle.net/2263/33373 Nel, M 2013, A Wideband double ridge guide horn antenna as complex antenna transfer function standard, MEng dissertation, University of Pretoria, Pretoria, viewed yymmdd <http://hdl.handle.net/2263/33373> |
work_keys_str_mv |
AT nelmariesa awidebanddoubleridgeguidehornantennaascomplexantennatransferfunctionstandard AT nelmariesa widebanddoubleridgeguidehornantennaascomplexantennatransferfunctionstandard |
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1718499795841056768 |