Fractional differential entropy and its application in modeling one-dimensional flow velocity

Fuente: arXiv
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Autori principali: Paul, Poulami, Kundu, Chancal
Natura: Preprint
Pubblicazione: 2025
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author Paul, Poulami
Kundu, Chancal
author_facet Paul, Poulami
Kundu, Chancal
contents The fractional order generalization of Shannon entropy proposed by Ubriaco has been studied for discrete distributions. In the current paper, we conduct a detailed study of the continuous analogue of this entropy termed as fractional differential entropy and find some interesting properties which makes it stand out among the existing entropies in literature. The studied entropy measure is evaluated analytically and numerically for some well-known continuous distributions, which will be quite useful in reliability analysis works and other statistical studies of complex systems. Further, it has been used to model the one-dimensional vertical velocity profile of turbulent flows in wide open channels. A one-parametric spatial distribution function is utilized for better estimation of the velocity distribution. The validity of the model has been established using experimental and field data through regression analysis. A comparative study is also presented to show the superiority of the proposed model over the existing entropy-based models.
format Preprint
id arxiv_https___arxiv_org_abs_2507_02323
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Fractional differential entropy and its application in modeling one-dimensional flow velocity
Paul, Poulami
Kundu, Chancal
Statistics Theory
Primary 94A17, Secondary 62P12, 86A05
The fractional order generalization of Shannon entropy proposed by Ubriaco has been studied for discrete distributions. In the current paper, we conduct a detailed study of the continuous analogue of this entropy termed as fractional differential entropy and find some interesting properties which makes it stand out among the existing entropies in literature. The studied entropy measure is evaluated analytically and numerically for some well-known continuous distributions, which will be quite useful in reliability analysis works and other statistical studies of complex systems. Further, it has been used to model the one-dimensional vertical velocity profile of turbulent flows in wide open channels. A one-parametric spatial distribution function is utilized for better estimation of the velocity distribution. The validity of the model has been established using experimental and field data through regression analysis. A comparative study is also presented to show the superiority of the proposed model over the existing entropy-based models.
title Fractional differential entropy and its application in modeling one-dimensional flow velocity
topic Statistics Theory
Primary 94A17, Secondary 62P12, 86A05
url https://arxiv.org/abs/2507.02323