Electronic Circuit Implementations of a Fractional-Order Chaotic System and Observing the Escape from Chaos

Author:

Akgul Akif1,Adiyaman Yusuf2,Gokyildirim Abdullah3,Aricioglu Burak3,Pala Muhammed Ali3,Cimen Murat Erhan3

Affiliation:

1. Department of Computer Engineering, Faculty of Engineering, Hitit University, 19030, Corum, Turkey

2. Department of Electrical & Electronics Engineering, Sakarya University of Applied Sciences, 54050, Sakarya, Turkey

3. Department of Electrical & Electronics Engineering, Bandirma Onyedi Eylul University, 10200, Balıkesir, Turkey

Abstract

Studies on fractional-order chaotic systems have increased significantly in the last decade. This paper presents Rucklidge chaotic system’s dynamical analyses and its fractional-order circuit implementations. Component values required for realizing the circuit of the fractional-order system are calculated for different fractional-orders. The feasibility of the attractor is examined by implementing its electronic circuit with a fractional-order module. The module is constructed based on the Diyi-Chen model since it is easier to implement and cost-effective. In electronic circuit implementations, it is observed that the system’s chaotic state disappears as the fractional degree decreases. Numerical and circuit simulation results are consistent well with the hardware experimental results.

Funder

Scientific and Technological Research Council of Turkey

Publisher

World Scientific Pub Co Pte Ltd

Subject

Electrical and Electronic Engineering,Hardware and Architecture,Media Technology

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