Please use this identifier to cite or link to this item: https://dspace.iiti.ac.in/handle/123456789/5822
Title: Design of Time–Frequency-Localized Two-Band Orthogonal Wavelet Filter Banks
Authors: Pachori, Ram Bilas
Keywords: Discrete wavelet transforms;Equivalence classes;Filter banks;Frequency localization;Orthogonal wavelets;Semi-definite programming;Two bands;Uncertainty principles;Low pass filters
Issue Date: 2018
Publisher: Birkhauser Boston
Citation: Bhati, D., Pachori, R. B., Sharma, M., & Gadre, V. M. (2018). Design of Time–Frequency-localized two-band orthogonal wavelet filter banks. Circuits, Systems, and Signal Processing, 37(8), 3295-3312. doi:10.1007/s00034-017-0738-8
Abstract: In this paper, we design time–frequency-localized two-band orthogonal wavelet filter banks using convex semidefinite programming (SDP). The sum of the time variance and frequency variance of the filter is used to formulate a real symmetric positive definite matrix for joint time–frequency localization of filters. Time–frequency-localized orthogonal low-pass filter with specified length and regularity order is designed. For nonmaximally regular two-band filter banks of length twenty, it is found that, as we increase the regularity order, the solution of the SDP converges to the filters with time–frequency product (TFP) almost same as the Daubechies maximally regular filter of length twenty. Unlike the class of Daubechies maximally regular minimum phase wavelet filter banks, a rank minimization algorithm in a SDP is employed to obtain mixed-phase low-pass filters with TFP of the filters as well as the scaling and wavelet function better than the equivalent two-band Daubechies filter bank. © 2018, Springer Science+Business Media, LLC, part of Springer Nature.
URI: https://doi.org/10.1007/s00034-017-0738-8
https://dspace.iiti.ac.in/handle/123456789/5822
ISSN: 0278-081X
Type of Material: Journal Article
Appears in Collections:Department of Electrical Engineering

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