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Sparse representation of two- and three-dimensional images with fractional Fourier, Hartley, linear canonical, and Haar wavelet transforms.

, , , , and . Expert Syst. Appl., (2017)

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Signal Processing Problems and Algorithms in Display Side of 3DTV., , , , , and . ICIP, page 2985-2988. IEEE, (2006)Information flow and interconnections in computing: extensions and applications of Rent's rule.. J. Parallel Distributed Comput., 64 (12): 1360-1370 (2004)Diffraction field computation from arbitrarily distributed data points in space., , , , and . Signal Process. Image Commun., 22 (2): 178-187 (2007)Sparse representation of two- and three-dimensional images with fractional Fourier, Hartley, linear canonical, and Haar wavelet transforms., , , , and . Expert Syst. Appl., (2017)Universal Lower Bound for Finite-Sample Reconstruction Error and Its Relation to Prolate Spheroidal Functions., and . IEEE Signal Process. Lett., 25 (1): 50-54 (2018)Optimal filtering in fractional Fourier domains., , , and . ICASSP, page 937-940. IEEE Computer Society, (1995)Optical information processing: Past, present, and future.. EUSIPCO, page 1-5. IEEE, (2005)Linear canonical transforms, degrees of freedom, and sampling in optical signals and systems., and . SIU, page 429-432. IEEE, (2014)Digital Computation of Linear Canonical Transforms., , , and . IEEE Trans. Signal Process., 56 (6): 2383-2394 (2008)Digital computation of the fractional Fourier transform., , , and . IEEE Trans. Signal Process., 44 (9): 2141-2150 (1996)