SIW/HMSIW Bandpass Filters for Ka Frequency Band Serving Wireless Applications

This paper describes a novel Substrate Integrated Waveguide (SIW) bandpass filter using Chebyshev approximation and Half Mode Substrate Integrated Waveguide (HMSIW) modeling technique. The developed 3rd order filter structure uses an inductive iris and an inductive post station in a way it resonates...

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Main Authors: Mehdi Damou, Yassine Benallou, Boualem Mansouri, Keltouma Nouri, Mohammed Chetioui, Abdelhakim Boudkhil
Format: Article
Language:English
Published: Polish Academy of Sciences 2021-09-01
Series:International Journal of Electronics and Telecommunications
Subjects:
Online Access:https://journals.pan.pl/Content/120802/PDF/51_3181_Damou_skl.pdf
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author Mehdi Damou
Yassine Benallou
Boualem Mansouri
Keltouma Nouri
Mohammed Chetioui
Abdelhakim Boudkhil
author_facet Mehdi Damou
Yassine Benallou
Boualem Mansouri
Keltouma Nouri
Mohammed Chetioui
Abdelhakim Boudkhil
author_sort Mehdi Damou
collection DOAJ
description This paper describes a novel Substrate Integrated Waveguide (SIW) bandpass filter using Chebyshev approximation and Half Mode Substrate Integrated Waveguide (HMSIW) modeling technique. The developed 3rd order filter structure uses an inductive iris and an inductive post station in a way it resonates in Ka frequency band serving wireless applications. The paper presents in details steps of the filter design formed by specific analytical equations to extract its different synthesizable parameters including coupling matrix, quality factor and initial geometric dimensions. The ideal frequency response of the filter is determined from an equivalent circuit that uses localized elements developed by AWR Microwave Software. High Frequency Structure Simulator (HFSS) is then employed to model the proposed filter structure and optimize its initial parameters until meeting the target specifications initially fixed in order to provide a high frequency response for the proposed filter design. Finally, the obtained results display a good performance for the proposed filter design and demonstrate a high usefulness for the employed technology that allows a low design volume.
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spelling doaj.art-cf50753444644ebfa2e1a69ba1791db92022-12-22T04:00:31ZengPolish Academy of SciencesInternational Journal of Electronics and Telecommunications2081-84912300-19332021-09-01vol. 67No 3355361https://doi.org/10.24425/ijet.2021.137820SIW/HMSIW Bandpass Filters for Ka Frequency Band Serving Wireless ApplicationsMehdi Damou0Yassine Benallou1Boualem Mansouri2Keltouma Nouri3Mohammed Chetioui4Abdelhakim Boudkhil5Laboratory of Technology of Communication, Faculty of Technology, University of Dr. Tahar Moulay of Saida, AlgeriaLaboratory of Technology of Communication, Faculty of Technology, University of Dr. Tahar Moulay of Saida, AlgeriaLaboratory of Technology of Communication, Faculty of Technology, University of Dr. Tahar Moulay of Saida, AlgeriaLaboratory of Technology of Communication, Faculty of Technology, University of Dr. Tahar Moulay of Saida, AlgeriaLaboratory of Telecommunications, Faculty of Technology, University of Abu Bakr Belkaid of Tlemcen, AlgeriaLaboratory of Telecommunications, Faculty of Technology, University of Abu Bakr Belkaid of Tlemcen, AlgeriaThis paper describes a novel Substrate Integrated Waveguide (SIW) bandpass filter using Chebyshev approximation and Half Mode Substrate Integrated Waveguide (HMSIW) modeling technique. The developed 3rd order filter structure uses an inductive iris and an inductive post station in a way it resonates in Ka frequency band serving wireless applications. The paper presents in details steps of the filter design formed by specific analytical equations to extract its different synthesizable parameters including coupling matrix, quality factor and initial geometric dimensions. The ideal frequency response of the filter is determined from an equivalent circuit that uses localized elements developed by AWR Microwave Software. High Frequency Structure Simulator (HFSS) is then employed to model the proposed filter structure and optimize its initial parameters until meeting the target specifications initially fixed in order to provide a high frequency response for the proposed filter design. Finally, the obtained results display a good performance for the proposed filter design and demonstrate a high usefulness for the employed technology that allows a low design volume.https://journals.pan.pl/Content/120802/PDF/51_3181_Damou_skl.pdffiltersiwhmsiwcmka bandwireless applications
spellingShingle Mehdi Damou
Yassine Benallou
Boualem Mansouri
Keltouma Nouri
Mohammed Chetioui
Abdelhakim Boudkhil
SIW/HMSIW Bandpass Filters for Ka Frequency Band Serving Wireless Applications
International Journal of Electronics and Telecommunications
filter
siw
hmsiw
cm
ka band
wireless applications
title SIW/HMSIW Bandpass Filters for Ka Frequency Band Serving Wireless Applications
title_full SIW/HMSIW Bandpass Filters for Ka Frequency Band Serving Wireless Applications
title_fullStr SIW/HMSIW Bandpass Filters for Ka Frequency Band Serving Wireless Applications
title_full_unstemmed SIW/HMSIW Bandpass Filters for Ka Frequency Band Serving Wireless Applications
title_short SIW/HMSIW Bandpass Filters for Ka Frequency Band Serving Wireless Applications
title_sort siw hmsiw bandpass filters for ka frequency band serving wireless applications
topic filter
siw
hmsiw
cm
ka band
wireless applications
url https://journals.pan.pl/Content/120802/PDF/51_3181_Damou_skl.pdf
work_keys_str_mv AT mehdidamou siwhmsiwbandpassfiltersforkafrequencybandservingwirelessapplications
AT yassinebenallou siwhmsiwbandpassfiltersforkafrequencybandservingwirelessapplications
AT boualemmansouri siwhmsiwbandpassfiltersforkafrequencybandservingwirelessapplications
AT keltoumanouri siwhmsiwbandpassfiltersforkafrequencybandservingwirelessapplications
AT mohammedchetioui siwhmsiwbandpassfiltersforkafrequencybandservingwirelessapplications
AT abdelhakimboudkhil siwhmsiwbandpassfiltersforkafrequencybandservingwirelessapplications