Modeling of Electrochemical Double Layer Capacitors by Means of Fractional Impedance

Author:

Martín Rodolfo1,Quintana Jose J.1,Ramos Alejandro2,de la Nuez Ignacio1

Affiliation:

1. Department of Electronic and Automatic Engineering, Las Palmas de Gran Canaria University, Campus Universitario de Tafira, 35017 Canary Islands, Spain

2. Department of Process Engineering, Las Palmas de Gran Canaria University, Campus Universitario de Tafira, 35017 Canary Islands, Spain

Abstract

The application of the fractional calculus for modeling electrochemical double layer capacitors is a novel way to get simpler and precise models. On using the impedance spectroscopy method, experimental results for different values have been obtained. In this paper, several classical mathematical models are studied and a different method is introduced in order to get a model from electrochemical double layer capacitors. This method is based on distinct models with fractional elements, and some parameters of the models are fitted to the experimental data, with minimal error. Finally, a Havriliak–Negami function based model is proposed. It achieves excellent fitting to the whole frequency interval analyzed.

Publisher

ASME International

Subject

Applied Mathematics,Mechanical Engineering,Control and Systems Engineering,Applied Mathematics,Mechanical Engineering,Control and Systems Engineering

Reference39 articles.

1. Electrochemical Supercapacitors

2. Fractional Calculus Applications in Control Systems;Axtell

3. Fractional-Order Systems and PIλDμ Controllers;Podlubny;IEEE Trans. Autom. Control

4. Vinagre, B. M. , 2001, “Modelado y Control de Sistemas Dinámicos Caracterizados por Ecuaciones Integro-Diferenciales de Orden Fraccional,” Ph.D. Thesis.

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