Frequency-Based Optimization Design for Fractional Delay FIR Filters with Software-Defined Radio Applications

A frequency-designed fractional delay FIR structure, which is suitable for software radio applications, is presented. The design method is based on frequency optimization of a combination of modified Farrow and mutirate structures. As a result the optimization frequency range is made only in half of...

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Main Authors: Javier Díaz-Carmona, Gordana Jovanovic-Dolecek, Agustín Ramírez-Agundis
Format: Article
Language:English
Published: Wiley 2010-01-01
Series:International Journal of Digital Multimedia Broadcasting
Online Access:http://dx.doi.org/10.1155/2010/194306
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author Javier Díaz-Carmona
Gordana Jovanovic-Dolecek
Agustín Ramírez-Agundis
author_facet Javier Díaz-Carmona
Gordana Jovanovic-Dolecek
Agustín Ramírez-Agundis
author_sort Javier Díaz-Carmona
collection DOAJ
description A frequency-designed fractional delay FIR structure, which is suitable for software radio applications, is presented. The design method is based on frequency optimization of a combination of modified Farrow and mutirate structures. As a result the optimization frequency range is made only in half of desired total bandwidth. According to the obtained results the proposed fractional delay structure allows online desired fractional delay update, with a high fractional delay value resolution.
format Article
id doaj-art-476cbabe786f47288353017627deffdc
institution Kabale University
issn 1687-7578
1687-7586
language English
publishDate 2010-01-01
publisher Wiley
record_format Article
series International Journal of Digital Multimedia Broadcasting
spelling doaj-art-476cbabe786f47288353017627deffdc2025-02-03T01:26:29ZengWileyInternational Journal of Digital Multimedia Broadcasting1687-75781687-75862010-01-01201010.1155/2010/194306194306Frequency-Based Optimization Design for Fractional Delay FIR Filters with Software-Defined Radio ApplicationsJavier Díaz-Carmona0Gordana Jovanovic-Dolecek1Agustín Ramírez-Agundis2Electronics Department, Technological Institute of Celaya, Celaya, GTO 38010, MexicoElectronics Department, National Institute of Astrophysics Optics and Electronics, Tonantzintla, PUE 72840, MexicoElectronics Department, Technological Institute of Celaya, Celaya, GTO 38010, MexicoA frequency-designed fractional delay FIR structure, which is suitable for software radio applications, is presented. The design method is based on frequency optimization of a combination of modified Farrow and mutirate structures. As a result the optimization frequency range is made only in half of desired total bandwidth. According to the obtained results the proposed fractional delay structure allows online desired fractional delay update, with a high fractional delay value resolution.http://dx.doi.org/10.1155/2010/194306
spellingShingle Javier Díaz-Carmona
Gordana Jovanovic-Dolecek
Agustín Ramírez-Agundis
Frequency-Based Optimization Design for Fractional Delay FIR Filters with Software-Defined Radio Applications
International Journal of Digital Multimedia Broadcasting
title Frequency-Based Optimization Design for Fractional Delay FIR Filters with Software-Defined Radio Applications
title_full Frequency-Based Optimization Design for Fractional Delay FIR Filters with Software-Defined Radio Applications
title_fullStr Frequency-Based Optimization Design for Fractional Delay FIR Filters with Software-Defined Radio Applications
title_full_unstemmed Frequency-Based Optimization Design for Fractional Delay FIR Filters with Software-Defined Radio Applications
title_short Frequency-Based Optimization Design for Fractional Delay FIR Filters with Software-Defined Radio Applications
title_sort frequency based optimization design for fractional delay fir filters with software defined radio applications
url http://dx.doi.org/10.1155/2010/194306
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AT gordanajovanovicdolecek frequencybasedoptimizationdesignforfractionaldelayfirfilterswithsoftwaredefinedradioapplications
AT agustinramirezagundis frequencybasedoptimizationdesignforfractionaldelayfirfilterswithsoftwaredefinedradioapplications