Co-existence of Chaos and Control in Generalized Lotka–Volterra Biological Model: A Comprehensive Analysis
Taqseer Khan () and
Harindri Chaudhary ()
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Taqseer Khan: Jamia Millia Islamia, Department of Mathematics
Harindri Chaudhary: Jamia Millia Islamia, Department of Mathematics
A chapter in Trends in Biomathematics: Chaos and Control in Epidemics, Ecosystems, and Cells, 2021, pp 271-279 from Springer
Abstract:
Abstract In this work, a detailed investigation of difference combination anti-synchronization (DCAS) scheme among populations of interplaying biological species via active control technique (ACT) has been made, using generalized Lotka–Volterra (GLV) three species model. For the discussed GLV model, a comprehensive chaotic analysis is possible and we further plot the phase graphs of GLV model for a set of particular values of the considering parameters. Additionally, the active nonlinear controllers are designed in accordance with Lyapunov stability theory (LST) to show the asymptotic convergence of the synchronization errors globally. Moreover, some numerical simulations have been carrying out in MATLAB which confirms the effectiveness of the considered strategy. Remarkably, both computational and analytic outcomes agree efficiently.
Date: 2021
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Persistent link: https://EconPapers.repec.org/RePEc:spr:sprchp:978-3-030-73241-7_17
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DOI: 10.1007/978-3-030-73241-7_17
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