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Implementation numerique du retard d’ordre fractionnaire

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dc.contributor.author Bensouici Tahar
dc.contributor.author Charef Abdelfatah
dc.contributor.author Bensouici Tahar
dc.contributor.author Charef Abdelfatah
dc.date.accessioned 2022-05-24T09:47:23Z
dc.date.available 2022-05-24T09:47:23Z
dc.date.issued 2012-01-01
dc.identifier.uri http://depot.umc.edu.dz/handle/123456789/5630
dc.description 128 f.
dc.description.abstract In the recent years, the fractional order digital delay concept has been found to be useful in several practical problems in diffe rent fields of engineering. The transfer function of this ideal fractional order digital delay is given by: m z D(z) − = , with 0 < m < 1 Because of its representation by an irrational transfer function, the ideal fractional order digital delay cannot be exac tly implemented; only a lim ited implementation may be accomplished using approximation methods. In this thesis design methods of stable, causa l and minimum phase digital IIR filter, based on fractional order systems and operators, approximating the ideal fractional order digital delay z -m (0 < m <1) are presented. Illustrative exampl es and applications have been presented to demonstrate the effectiveness and the exactitude of the proposed fractional delay digital filter design methods. The simulation results obtained have been discussed and compared to the most recent implementation methods of the ideal fractional order dela y in the literature
dc.format 31 cm.
dc.language.iso fre
dc.publisher Université Frères Mentouri - Constantine 1
dc.subject Electronique
dc.subject Approximation de Charef
dc.subject Filtre numérique RII
dc.subject Pôle à puissance fractionnaire
dc.subject Retard numérique d’ordre fractionnaire
dc.subject Transformation analogique numérique
dc.title Implementation numerique du retard d’ordre fractionnaire
dc.coverage Doctorat en sciences 2 copies imprimées disponibles


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