A new 4-D hyperchaotic hyperjerk system with a single equilibrium, its dynamic properties and circuit design

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date 2019-12-04 03:37:43
eventvenue Bali, Indonesia
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id 6954
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originalfilename 2003-01-FH03-FIK-19-35713.pdf
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spelling 6954 https://intelek.unisza.edu.my/intelek/pages/view.php?ref=6954 https://intelek.unisza.edu.my/intelek/pages/search.php?search=!collection407072 Restricted Document Conference Conference Paper application/pdf 9 1.6 Adobe Acrobat Pro DC 20 Paper Capture Plug-in Mozilla/5.0 (Windows NT 6.1; Win64; x64) AppleWebKit/537.36 (KHTML like Gecko) Chrome/78.0.3904.108 Safari/537.36 2019-12-04 03:37:43 2003-01-FH03-FIK-19-35713.pdf UniSZA Private Access A new 4-D hyperchaotic hyperjerk system with a single equilibrium, its dynamic properties and circuit design This paper announces a new four-dimensional hyperchaotic hyperjerk system with a single equilibrium and discusses its dynamic properties such as Lyapunov exponents, phase portraits, Kaplan-Yorke dimension and equilibrium points. Hyperjerk systems have a nice triangular structure in their dynamics and they have many engineering applications. Our new hyperjerk system has three nonlinearities in total. New synchronization results based on active backstepping control are also derived for the new hyperjerk system. In addition, an electronic circuit implementation of the new hyperjerk system is designed carefully and examined well in MultiSIM. A good qualitative agreement has been shown between the MATLAB simulations of the theoretical hyperchaotic hyperjerk model and the MultiSIM results. 7th International Conference on Global Optimization and Its Application 2018 Bali, Indonesia
spellingShingle A new 4-D hyperchaotic hyperjerk system with a single equilibrium, its dynamic properties and circuit design
summary This paper announces a new four-dimensional hyperchaotic hyperjerk system with a single equilibrium and discusses its dynamic properties such as Lyapunov exponents, phase portraits, Kaplan-Yorke dimension and equilibrium points. Hyperjerk systems have a nice triangular structure in their dynamics and they have many engineering applications. Our new hyperjerk system has three nonlinearities in total. New synchronization results based on active backstepping control are also derived for the new hyperjerk system. In addition, an electronic circuit implementation of the new hyperjerk system is designed carefully and examined well in MultiSIM. A good qualitative agreement has been shown between the MATLAB simulations of the theoretical hyperchaotic hyperjerk model and the MultiSIM results.
title A new 4-D hyperchaotic hyperjerk system with a single equilibrium, its dynamic properties and circuit design
title_full A new 4-D hyperchaotic hyperjerk system with a single equilibrium, its dynamic properties and circuit design
title_fullStr A new 4-D hyperchaotic hyperjerk system with a single equilibrium, its dynamic properties and circuit design
title_full_unstemmed A new 4-D hyperchaotic hyperjerk system with a single equilibrium, its dynamic properties and circuit design
title_short A new 4-D hyperchaotic hyperjerk system with a single equilibrium, its dynamic properties and circuit design
title_sort new 4-d hyperchaotic hyperjerk system with a single equilibrium, its dynamic properties and circuit design