Basic structure of square and circle for defected waveguide structure

Many existing waveguide designs focus on the application such as antenna and filter. Besides that, metamaterial used to design with waveguide is usually conducted by loading method. The configuration such as the walls or planes of waveguide is rarely proposed and designed. The motivation of this pap...

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Main Authors: Chin Shu Jia, Abd. Aziz Mohamad Zoinol Abidin
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201714001010
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spelling doaj-59e8396f94b24904b066234661db6ba42021-02-02T03:09:14ZengEDP SciencesMATEC Web of Conferences2261-236X2017-01-011400101010.1051/matecconf/201714001010matecconf_iceesi2017_01010Basic structure of square and circle for defected waveguide structureChin Shu JiaAbd. Aziz Mohamad Zoinol AbidinMany existing waveguide designs focus on the application such as antenna and filter. Besides that, metamaterial used to design with waveguide is usually conducted by loading method. The configuration such as the walls or planes of waveguide is rarely proposed and designed. The motivation of this paper is to introduce the Defected Waveguide Structure (DWS) in waveguide to operate in Ultrawideband (UWB) frequency range. DWS is designed by using basic structure of square and circle. The square and circle are designed at all the walls of waveguide in patch. Hybrid design by mixing the square and circle is also proposed. The performance of DWS towards waveguide is analysed by using the transmission coefficient (S21) and reflection coefficient (S11). The filter circuit is constructed for modelling purpose to determine the value of inductance and capacitance. Copper waveguide acts as high pass filter at the frequency larger than cut off frequency 2.76GHz. The square DWS design works as band pass filter with narrowest bandwidth of 5.19GHz. The circle DWS design achieves the widest bandwidth of 6.55GHz for the pass band performance. Hybrid design improves the bandwidth slightly compare to square DWS design by 0.54GHz.https://doi.org/10.1051/matecconf/201714001010
collection DOAJ
language English
format Article
sources DOAJ
author Chin Shu Jia
Abd. Aziz Mohamad Zoinol Abidin
spellingShingle Chin Shu Jia
Abd. Aziz Mohamad Zoinol Abidin
Basic structure of square and circle for defected waveguide structure
MATEC Web of Conferences
author_facet Chin Shu Jia
Abd. Aziz Mohamad Zoinol Abidin
author_sort Chin Shu Jia
title Basic structure of square and circle for defected waveguide structure
title_short Basic structure of square and circle for defected waveguide structure
title_full Basic structure of square and circle for defected waveguide structure
title_fullStr Basic structure of square and circle for defected waveguide structure
title_full_unstemmed Basic structure of square and circle for defected waveguide structure
title_sort basic structure of square and circle for defected waveguide structure
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2017-01-01
description Many existing waveguide designs focus on the application such as antenna and filter. Besides that, metamaterial used to design with waveguide is usually conducted by loading method. The configuration such as the walls or planes of waveguide is rarely proposed and designed. The motivation of this paper is to introduce the Defected Waveguide Structure (DWS) in waveguide to operate in Ultrawideband (UWB) frequency range. DWS is designed by using basic structure of square and circle. The square and circle are designed at all the walls of waveguide in patch. Hybrid design by mixing the square and circle is also proposed. The performance of DWS towards waveguide is analysed by using the transmission coefficient (S21) and reflection coefficient (S11). The filter circuit is constructed for modelling purpose to determine the value of inductance and capacitance. Copper waveguide acts as high pass filter at the frequency larger than cut off frequency 2.76GHz. The square DWS design works as band pass filter with narrowest bandwidth of 5.19GHz. The circle DWS design achieves the widest bandwidth of 6.55GHz for the pass band performance. Hybrid design improves the bandwidth slightly compare to square DWS design by 0.54GHz.
url https://doi.org/10.1051/matecconf/201714001010
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