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Published in: Soft Computing 13/2017

18-05-2017 | Focus

Trigonometric \(F^m\)-transform and its approximative properties

Authors: R. Alikhani, M. Zeinali, F. Bahrami, S. Shahmorad, I. Perfilieva

Published in: Soft Computing | Issue 13/2017

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Abstract

The paper is devoted to generalizing the F-transform with constant components to the trigonometric \(F^m\)-transform (or \(^{t}F^{m}\)-transform for short) where \(^{t}F^{m}\)-transform components are trigonometric polynomials up to m degree, \(m\ge 0\). The involving basic functions for \(^{t}F^{m}\)-transform are sinusoidal shaped functions which are smooth functions. Applying the Gram–Schmidt procedure in order to achieve an orthogonal system leads us to simple calculations of trigonometric basis functions, and we obtain an explicit representation for them for arbitrary m. The approximation and convergence properties of the direct and inverse \(^{t}F^{m}\)-transforms are discussed, and the applicability of \(^{t}F^{m}\)-transforms is illustrated by some examples.

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Literature
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go back to reference Perfilieva I, Daňková M (2008a) Image fusion on the basis of fuzzy transforms. In: Ruanetal D (ed) Computational intelligence in decision and control, World Scientific, Paris, France, 2008, pp. 471–476 Perfilieva I, Daňková M (2008a) Image fusion on the basis of fuzzy transforms. In: Ruanetal D (ed) Computational intelligence in decision and control, World Scientific, Paris, France, 2008, pp. 471–476
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Metadata
Title
Trigonometric -transform and its approximative properties
Authors
R. Alikhani
M. Zeinali
F. Bahrami
S. Shahmorad
I. Perfilieva
Publication date
18-05-2017
Publisher
Springer Berlin Heidelberg
Published in
Soft Computing / Issue 13/2017
Print ISSN: 1432-7643
Electronic ISSN: 1433-7479
DOI
https://doi.org/10.1007/s00500-017-2637-0

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