Controlling wolbachia transmission and invasion dynamics among aedes aegypti population via impulsive control strategy

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Abstract

This work is devoted to analyzing an impulsive control synthesis to maintain the self-sustainability of Wolbachia among Aedes Aegypti mosquitoes. The present paper provides a fractional order Wolbachia invasive model. Through fixed point theory, this work derives the existence and uniqueness results for the proposed model. Also, we performed a global Mittag-Leffler stability analysis via Linear Matrix Inequality theory and Lyapunov theory. As a result of this controller synthesis, the sustainability of Wolbachia is preserved and non-Wolbachia mosquitoes are eradicated. Finally, a numerical simulation is established for the published data to analyze the nature of the proposed Wolbachia invasive model.

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Dianavinnarasi, J., Raja, R., Alzabut, J., Niezabitowski, M., & Bagdasar, O. (2021). Controlling wolbachia transmission and invasion dynamics among aedes aegypti population via impulsive control strategy. Symmetry, 13(3). https://doi.org/10.3390/sym13030434

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