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Correcting Dimensional Mismatch in Fractional Models With Power, Exponential and Proportional Kernel: Application To Electrical Systems

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Date

2022

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Publisher

Elsevier

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GOLD

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Abstract

Fractional calculus is a powerful tool for describing diffusion phenomena, anomalous behaviors, and in general, systems with highly complex dynamics. However, the application of fractional operators for modeling purposes, produces a dimensional problem. In this paper, the fractional models of the RC, RL, RLC electrical circuits, a supercapacitor, a bank of supercapacitors, a LiFePO4 battery and a direct current motor are presented. A correction parameter is included in their formulation in order to preserve dimensionality in the physical equations. The optimal value of this parameter was determined via particle swarm optimization algorithm using numerical simulations and experimental data. Thus, a direct and effective approach for the construction of dimensionally corrected fractional models with power, exponential-decay and constant proportional Caputo hybrid derivative is presented. To show the effectiveness of the procedure, the time-response of the models is compared with experimental data and the modeling error is computed. The numerical solutions of the models were obtained using a numerical method based on the Adams methods.

Description

Gomez-Aguilar, J.F./0000-0001-9403-3767; Lopez Lopez, Ma. Guadalupe/0000-0003-3831-5174; Alvarado Martinez, Victor Manuel/0000-0003-1769-9607

Keywords

Fractional Calculus, Power-Law, Exponential Decay-Law, Constant Proportional Caputo Hybrid Derivative, Electrical Systems, Power-law, Physics, QC1-999, Fractional calculus, Constant proportional Caputo hybrid derivative, Electrical systems, Exponential decay-law

Turkish CoHE Thesis Center URL

Fields of Science

0103 physical sciences, 01 natural sciences

Citation

Correa-Escudero, I.L.;...et.al. (2022). "Correcting dimensional mismatch in fractional models with power, exponential and proportional kernel: Application to electrical systems", Results in Physics, Vol.40.

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Q1

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Q1
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OpenCitations Citation Count
4

Source

Results in Physics

Volume

40

Issue

Start Page

105867

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CrossRef : 7

Scopus : 11

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Mendeley Readers : 2

SCOPUS™ Citations

11

checked on Feb 03, 2026

Web of Science™ Citations

9

checked on Feb 03, 2026

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1.39473153

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