Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/11531/108702
Título : Periodicity thresholds and optimal control in a negative chemotaxis system with cell death
Autor : Herrero Hervás, Federico
Negreanu, Mihaela
Vargas, Antonio M.
Fecha de publicación : 12-feb-2026
Resumen : We numerically investigate a nonlinear system of parabolic partial differential equations modeling the negative chemotaxis interactions between a biological species and a lethal chemical substance that is externally supplied. The work extends the knowledge regarding the solutions to an ODE system to which the solutions of the original PDE model converge, as well as the regime of this convergence beyond the existing analytical results. In particular, for a periodic supply of the substance, a threshold value for the periodicity of the solutions to the ODE system is determined through systematic numerical experiments. Under the obtained conditions – weaker than the current analytical characterization – the convergence and eventual periodicity of the solutions to the PDE model is verified by meshless numerical simulations using the Generalized Finite Difference method. Lastly, an optimal control problem is considered, and an approximate solution is constructed.
We numerically investigate a nonlinear system of parabolic partial differential equations modeling the negative chemotaxis interactions between a biological species and a lethal chemical substance that is externally supplied. The work extends the knowledge regarding the solutions to an ODE system to which the solutions of the original PDE model converge, as well as the regime of this convergence beyond the existing analytical results. In particular, for a periodic supply of the substance, a threshold value for the periodicity of the solutions to the ODE system is determined through systematic numerical experiments. Under the obtained conditions – weaker than the current analytical characterization – the convergence and eventual periodicity of the solutions to the PDE model is verified by meshless numerical simulations using the Generalized Finite Difference method. Lastly, an optimal control problem is considered, and an approximate solution is constructed.
Descripción : Artículos en revistas
URI : https://doi.org/10.1016/j.enganabound.2026.106688
http://hdl.handle.net/11531/108702
ISSN : 0955-7997
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