Filter function synthesis by Gegenbauer generating function

Low-pass all-pole transfer functions with non-monotonic amplitude characteristic in the pass-band and at least (n -1) flatness conditions for ω = 0 are considered in this paper. A new class of filters in explicit form with one free parameter is obtained by applying generating functions of Gegenbauer...

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Main Author: Pavlović Vlastimir D.
Format: Article
Language:English
Published: Faculty of Technical Sciences in Cacak 2006-01-01
Series:Serbian Journal of Electrical Engineering
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/1451-4869/2006/1451-48690601055P.pdf
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spelling doaj-14699ce680d04a14a63cfbd3579496672020-11-24T22:04:21ZengFaculty of Technical Sciences in CacakSerbian Journal of Electrical Engineering1451-48692217-71832006-01-0131556210.2298/SJEE0601055P1451-48690601055PFilter function synthesis by Gegenbauer generating functionPavlović Vlastimir D.0Department of Electronics, University of NišLow-pass all-pole transfer functions with non-monotonic amplitude characteristic in the pass-band and at least (n -1) flatness conditions for ω = 0 are considered in this paper. A new class of filters in explicit form with one free parameter is obtained by applying generating functions of Gegenbauer polynomials. This class of filters has good selectivity and good shape of amplitude characteristics in the pass-band. The amplitude characteristics of these transfer functions have gain in the upper part of pass-band with respect to the gain for ω = 0. This way we have greater margin of attenuation in the upper part of the pass-band. This means a greater tolerance of elements or for elements with given tolerances, greater ambient temperature changes. The appropriate choice of the free parameter enables us to generate filter functions obtained with Chebyshev polynomials of the first and second kind and Legendre polynomials.http://www.doiserbia.nb.rs/img/doi/1451-4869/2006/1451-48690601055P.pdfGegenbauer polynomialsfilter functions
collection DOAJ
language English
format Article
sources DOAJ
author Pavlović Vlastimir D.
spellingShingle Pavlović Vlastimir D.
Filter function synthesis by Gegenbauer generating function
Serbian Journal of Electrical Engineering
Gegenbauer polynomials
filter functions
author_facet Pavlović Vlastimir D.
author_sort Pavlović Vlastimir D.
title Filter function synthesis by Gegenbauer generating function
title_short Filter function synthesis by Gegenbauer generating function
title_full Filter function synthesis by Gegenbauer generating function
title_fullStr Filter function synthesis by Gegenbauer generating function
title_full_unstemmed Filter function synthesis by Gegenbauer generating function
title_sort filter function synthesis by gegenbauer generating function
publisher Faculty of Technical Sciences in Cacak
series Serbian Journal of Electrical Engineering
issn 1451-4869
2217-7183
publishDate 2006-01-01
description Low-pass all-pole transfer functions with non-monotonic amplitude characteristic in the pass-band and at least (n -1) flatness conditions for ω = 0 are considered in this paper. A new class of filters in explicit form with one free parameter is obtained by applying generating functions of Gegenbauer polynomials. This class of filters has good selectivity and good shape of amplitude characteristics in the pass-band. The amplitude characteristics of these transfer functions have gain in the upper part of pass-band with respect to the gain for ω = 0. This way we have greater margin of attenuation in the upper part of the pass-band. This means a greater tolerance of elements or for elements with given tolerances, greater ambient temperature changes. The appropriate choice of the free parameter enables us to generate filter functions obtained with Chebyshev polynomials of the first and second kind and Legendre polynomials.
topic Gegenbauer polynomials
filter functions
url http://www.doiserbia.nb.rs/img/doi/1451-4869/2006/1451-48690601055P.pdf
work_keys_str_mv AT pavlovicvlastimird filterfunctionsynthesisbygegenbauergeneratingfunction
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