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n -Dimensional Polynomial Chaotic System With Applications.

Authors :
Hua, Zhongyun
Zhang, Yinxing
Bao, Han
Huang, Hejiao
Zhou, Yicong
Source :
IEEE Transactions on Circuits & Systems. Part I: Regular Papers; Feb2022, Vol. 69 Issue 2, p784-797, 14p
Publication Year :
2022

Abstract

Designing high-dimensional chaotic maps with expected dynamic properties is an attractive but challenging task. The dynamic properties of a chaotic system can be reflected by the Lyapunov exponents (LEs). Using the inherent relationship between the parameters of a chaotic map and its LEs, this paper proposes an $n$ -dimensional polynomial chaotic system ($n\text{D}$ -PCS) that can generate $n\text{D}$ chaotic maps with any desired LEs. The $n\text{D}$ -PCS is constructed from $n$ parametric polynomials with arbitrary orders, and its parameter matrix is configured using the preliminaries in linear algebra. Theoretical analysis proves that the $n\text{D}$ -PCS can produce high-dimensional chaotic maps with any desired LEs. To show the effects of the $n\text{D}$ -PCS, two high-dimensional chaotic maps with hyperchaotic behaviors were generated. A microcontroller-based hardware platform was developed to implement the two chaotic maps, and the test results demonstrated the randomness properties of their chaotic signals. Performance evaluations indicate that the high-dimensional chaotic maps generated from $n\text{D}$ -PCS have the desired LEs and more complicated dynamic behaviors compared with other high-dimensional chaotic maps. In addition, to demonstrate the applications of $n\text{D}$ -PCS, we developed a chaos-based secure communication scheme. Simulation results show that $n\text{D}$ -PCS has a stronger ability to resist channel noise than other high-dimensional chaotic maps. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15498328
Volume :
69
Issue :
2
Database :
Complementary Index
Journal :
IEEE Transactions on Circuits & Systems. Part I: Regular Papers
Publication Type :
Periodical
Accession number :
154974591
Full Text :
https://doi.org/10.1109/TCSI.2021.3117865