Wavelet-Based Entropy Measures to Characterize Two-Dimensional Fractional Brownian Fields

Nicolis O.; Mateu J.; Contreras-Reyes J.E.

Abstract

The aim of this work was to extend the results of Perez et al. (Physica A (2006), 365 (2), 282-288) to the two-dimensional (2D) fractional Brownian field. In particular, we defined Shannon entropy using the wavelet spectrum from which the Hurst exponent is estimated by the regression of the logarithm of the square coefficients over the levels of resolutions. Using the same methodology. we also defined two other entropies in 2D: Tsallis and the Renyi entropies. A simulation study was performed for showing the ability of the method to characterize 2D (in this case, alpha=2) self-similar processes.

Más información

Título según WOS: Wavelet-Based Entropy Measures to Characterize Two-Dimensional Fractional Brownian Fields
Título según SCOPUS: Wavelet-Based entropy measures to characterize two-dimensional fractional brownian fields
Título de la Revista: Entropy
Volumen: 22
Número: 2
Editorial: MDPI
Fecha de publicación: 2020
Idioma: English
DOI:

10.3390/e22020196

Notas: ISI, SCOPUS