Affiliation:
1. Department of Mathematical Sciences, Islamic University of Science and Technology, Kashmir
Abstract
A generalization of Mallat?s classical multiresolution analysis, based on the
theory of spectral pairs, was considered in two articles by Gabardo and
Nashed. In this setting, the associated translation set is no longer a
discrete subgroup of R but a spectrum associated with a certain
one-dimensional spectral pair and the associated dilation is an even
positive integer related to the given spectral pair. In this paper, we
continue the study based on this nonstandard setting and introduce
vector-valued nonuniform multiresolution analysis associated with linear
canonical transform (LCT-VNUMRA) where the associated subspace V?0 of the
function space L2 (R,CM) has an orthonormal basis of the form {?(x ? ?)e?
??A B (t2??2)} ??? where ? = {0, r/N} + 2Z,N ? 1 is an integer and r is an
odd integer such that r and N are relatively prime. We establish a necessary
and sufficient condition for the existence of associated wavelets and derive
an algorithm for the construction of vector-valued nonuniform
multiresolution analysis starting from a vector refinement mask with
appropriate conditions
Publisher
National Library of Serbia
Reference21 articles.
1. M. Y. Bhat, Generalized Inequalities for Nonuniform Wavelet Frames in Linear Canonical Transform Domain, Filomat 37:12 (2023), 3725-3735.
2. M. Y. Bhat and A. H. Dar, Wavelet packets associated with linear canonical transform on spectrum, International Journal of Wavelets Multiresolution and Information Process 6 (2021) 2150030.
3. M. Y. Bhat and A. H. Dar, Vector-Valued Nonuniform Multiresolution Analysis Associated with Linear Canonical Transform , https://doi.org/10.48550/arXiv.2011.08339
4. M. Y. Bhat and A. H. Dar, Octonion Spectrum of 3D Short-time LCT Signals, Optik - International Journal for Light and Electron Optics, 261 (2022) 169156
5. M. Y. Bhat and A. H. Dar, Quadratic-phase wave packet transform, Optik - International Journal for Light and Electron Optics, 261 (2022) 169120
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