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A new two-scroll 4-D hyperchaotic system with a unique saddle point equilibrium, its bifurcation analysis, circuit design and a control application to complete synchronization
In this work, we present new results for a two-scroll 4-D hyperchaotic system with a unique saddle point equilibrium at the origin. The bifurcation and multi-stability analysis for the new hyperchaotic system are discussed in detail. As a control application, we develop a feedback control based on i...
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Published in: | Archives of control sciences 2023-01, Vol.33 (2), p.277-298 |
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container_title | Archives of control sciences |
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creator | Vaidyanathan, Sundarapandian Moroz, Irene M Sambas, Aceng |
description | In this work, we present new results for a two-scroll 4-D hyperchaotic system with a unique saddle point equilibrium at the origin. The bifurcation and multi-stability analysis for the new hyperchaotic system are discussed in detail. As a control application, we develop a feedback control based on integral sliding mode control (ISMC) for the complete synchronization of a pair of two-scroll hyperchaotic systems developed in this work. Numerical simulations using Matlab are provided to illustrate the hyperchaotic phase portraits, bifurcation diagrams and synchronization results. Finally, as an electronic application, we simulate the new hyperchaotic system using Multisim for real-world implementations. |
doi_str_mv | 10.24425/acs.2023.146276 |
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subjects | Aldehydes bifurcation analysis Bifurcations Circuit design circuit simulation Eigenvalues Equilibrium Feedback control hyperchaos hyperchaotic systems multi-stability analysis multisim Saddle points Sliding mode control Stability analysis Synchronism synchronization |
title | A new two-scroll 4-D hyperchaotic system with a unique saddle point equilibrium, its bifurcation analysis, circuit design and a control application to complete synchronization |
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