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Electronic Circuit in the Two-Scroll Hyperchaotic System with a Unique Saddle-Point Rest Point and its Synchronization via Integral Sliding Mode Control.

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Title: Electronic Circuit in the Two-Scroll Hyperchaotic System with a Unique Saddle-Point Rest Point and its Synchronization via Integral Sliding Mode Control.
Authors: Mujiarto1 mujiarto@umtas.ac.id, Mohamad Ayob, Ahmad Faisal2 ahmad.faisal@umt.edu.my, Vaidyanathan, Sundarapandian3 sundar@veltech.edu.in, Sambas, Aceng4,5 acengsambas@unisza.edu.my, Benkouider, Khaled6 khaled.benkouider@univ-annaba.dz, Nawawi, Mohd Kamal Mohd7 mdkamal@uum.edu.my, Khalid, Kamal7 kamal@uum.edu.my, Madi, Elissa Nadia4 elissa@unisza.edu.my
Superior Title: IAENG International Journal of Applied Mathematics. Mar2024, Vol. 54 Issue 3, p452-464. 13p.
Subject Terms: *SLIDING mode control, *ELECTRONIC circuits, *ELECTRONIC circuit design, *SYNCHRONIZATION, *INTEGRALS
Abstract: A new 4-D two-scroll hyperchaotic system with three quadratic nonlinearities is detailed in this research paper. It is shown that the new hyperchaotic system has a unique saddle-point rest point at the origin and it exhibits self-excited attractor. A detailed stability analysis is carried out for the new hyperchaotic system.It is also proved that the new hyperchaotic system has multistability with coexisting attractors. Next, we invoke integral sliding mode control for the global self-synchronization of the new hyperchaotic system taken as leader-follower systems.An electronic circuit design of the new two-scroll hyperchaotic system is developed in MultiSim, which is beneficial for engineering applications. [ABSTRACT FROM AUTHOR]
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