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Auteur Omrani, Mabrouk |
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Titre : Two-dimensional sampling rate alteration via one-dimensional techniques Type de document : texte imprimé Auteurs : Omrani, Mabrouk, Auteur ; B. Basu, Directeur de thèse Editeur : Stevens Institute of Technology Année de publication : 1986 Importance : 107 f. Présentation : ill. Format : 28 cm Note générale : Mémoire de Master : Electrotechnique : New Jersey, Stevens Institute of technology : 1986
Bibliogr. f. 108 - 110Langues : Anglais (eng) Mots-clés : Sampling rate alteration
Two-dimensional signals
Filtering techniques
Non-recursive implementations
Dimensional interpolattion Digital filterIndex. décimale : Ms00786 Résumé : The problem of sampling rate alteration of deterministic two-dimensional signals is addressed on the basis of frequency domain description of the signal.
It is shown that the problem can be formulated in such a way that a solution can be obtained via filtering techniques known for one-dimensional signals.
Non-recursive implementations of such interpolation and decimation filters are investigated.
The resulting filter structures can potentially be implemented in parallel and/or pipelined architecture for fast real time applications.
Experiments with digitized images are also reported to demonstrate the performance of the designed interpolation and decimation filters.Two-dimensional sampling rate alteration via one-dimensional techniques [texte imprimé] / Omrani, Mabrouk, Auteur ; B. Basu, Directeur de thèse . - Stevens Institute of Technology, 1986 . - 107 f. : ill. ; 28 cm.
Mémoire de Master : Electrotechnique : New Jersey, Stevens Institute of technology : 1986
Bibliogr. f. 108 - 110
Langues : Anglais (eng)
Mots-clés : Sampling rate alteration
Two-dimensional signals
Filtering techniques
Non-recursive implementations
Dimensional interpolattion Digital filterIndex. décimale : Ms00786 Résumé : The problem of sampling rate alteration of deterministic two-dimensional signals is addressed on the basis of frequency domain description of the signal.
It is shown that the problem can be formulated in such a way that a solution can be obtained via filtering techniques known for one-dimensional signals.
Non-recursive implementations of such interpolation and decimation filters are investigated.
The resulting filter structures can potentially be implemented in parallel and/or pipelined architecture for fast real time applications.
Experiments with digitized images are also reported to demonstrate the performance of the designed interpolation and decimation filters.Réservation
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