Design of flat halfband filters with sharp transition and differentiators through constrained quadratic optimization

An alternative method for the design of type I Halfband FIR filters with flat magnitude and narrow transition bands is presented. The methodology shown is based on the derivation of a quadratic programming problem with inequality constraints, which represents a set of linear equations obtained from...

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Autores principales: Platas Garza, Miguel Ángel, Rodríguez Maldonado, Johnny
Formato: Artículo
Lenguaje:inglés
Publicado: 2017
Materias:
Acceso en línea:http://eprints.uanl.mx/26986/1/26986.pdf
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author Platas Garza, Miguel Ángel
Rodríguez Maldonado, Johnny
author_facet Platas Garza, Miguel Ángel
Rodríguez Maldonado, Johnny
author_sort Platas Garza, Miguel Ángel
collection Repositorio Institucional
description An alternative method for the design of type I Halfband FIR filters with flat magnitude and narrow transition bands is presented. The methodology shown is based on the derivation of a quadratic programming problem with inequality constraints, which represents a set of linear equations obtained from flat and ripple restrictions imposed over the frequency response of the f ilter. The design is based on maximally flat constraints. The obtained filters have narrow transition bands as compared to those presented in other maximally flat based designs. The proposed method is not ripple free as it does not take into account all the maximally f lat restrictions. Then, control of side lobes and transition band is performed using a weighting matrix and inequality constraints as side lobes bounds. The design of type IV FIR digital differentiators through the proposed method is also shown. Examples of design, which compare the proposed method with others presented in the literature, are provided to verify the effectiveness of the proposed method.
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spelling eprints-269862024-10-17T17:35:48Z http://eprints.uanl.mx/26986/ Design of flat halfband filters with sharp transition and differentiators through constrained quadratic optimization Platas Garza, Miguel Ángel Rodríguez Maldonado, Johnny QA Matemáticas, Ciencias computacionales An alternative method for the design of type I Halfband FIR filters with flat magnitude and narrow transition bands is presented. The methodology shown is based on the derivation of a quadratic programming problem with inequality constraints, which represents a set of linear equations obtained from flat and ripple restrictions imposed over the frequency response of the f ilter. The design is based on maximally flat constraints. The obtained filters have narrow transition bands as compared to those presented in other maximally flat based designs. The proposed method is not ripple free as it does not take into account all the maximally f lat restrictions. Then, control of side lobes and transition band is performed using a weighting matrix and inequality constraints as side lobes bounds. The design of type IV FIR digital differentiators through the proposed method is also shown. Examples of design, which compare the proposed method with others presented in the literature, are provided to verify the effectiveness of the proposed method. 2017 Article PeerReviewed text en cc_by_nc_nd http://eprints.uanl.mx/26986/1/26986.pdf http://eprints.uanl.mx/26986/1.haspreviewThumbnailVersion/26986.pdf Platas Garza, Miguel Ángel y Rodríguez Maldonado, Johnny (2017) Design of flat halfband filters with sharp transition and differentiators through constrained quadratic optimization. Computación y Sistemas, 21 (2). pp. 293-303. ISSN 1405-5546 http://doi.org/10.13053/CyS-21-2-2738 doi:10.13053/CyS-21-2-2738
spellingShingle QA Matemáticas, Ciencias computacionales
Platas Garza, Miguel Ángel
Rodríguez Maldonado, Johnny
Design of flat halfband filters with sharp transition and differentiators through constrained quadratic optimization
thumbnail https://rediab.uanl.mx/themes/sandal5/images/online.png
title Design of flat halfband filters with sharp transition and differentiators through constrained quadratic optimization
title_full Design of flat halfband filters with sharp transition and differentiators through constrained quadratic optimization
title_fullStr Design of flat halfband filters with sharp transition and differentiators through constrained quadratic optimization
title_full_unstemmed Design of flat halfband filters with sharp transition and differentiators through constrained quadratic optimization
title_short Design of flat halfband filters with sharp transition and differentiators through constrained quadratic optimization
title_sort design of flat halfband filters with sharp transition and differentiators through constrained quadratic optimization
topic QA Matemáticas, Ciencias computacionales
url http://eprints.uanl.mx/26986/1/26986.pdf
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AT rodriguezmaldonadojohnny designofflathalfbandfilterswithsharptransitionanddifferentiatorsthroughconstrainedquadraticoptimization