Nonstandard finite difference schemes for some epidemic optimal control problems

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dc.contributor.author Ouemba Tassé, Arsène J.
dc.contributor.author Kubalasa, Vuyiswa B.
dc.contributor.author Tsanou, Berge
dc.contributor.author Lubuma, Jean M.-S.
dc.date.accessioned 2024-09-10T04:46:11Z
dc.date.available 2024-09-10T04:46:11Z
dc.date.issued 2025-02
dc.description.abstract We construct and analyse nonstandard finite difference (NSFD) schemes for two epidemic optimal control problems. Firstly, we consider the well-known MSEIR system that can be used to model childhood diseases such as the measles, with the vaccination as a control intervention. The second optimal control problem is related to the 2014–2016 West Africa Ebola Virus Disease (EVD) outbreak, that came with the unprecedented challenge of the disease spreading simultaneously in three different countries, namely Guinea, Liberia and Sierra Leone, where it was difficult to control the considerable migrations and travels of people inbound and outbound. We develop an extended SEIRD metapopulation model modified by the addition of compartments of quarantined and isolated individuals. The control parameters are the exit screening of travelers and the vaccination of the susceptible individuals. For the two optimal control problems, we provide the results on: (i) the (global) stability of the disease-free and/or endemic equilibria of the state variable systems; (ii) the positivity and boundedness of solutions of the state variables systems; (iii) the existence, uniqueness and characterization of the optimal control solutions that minimizes the cost functional. On the other hand: (iv) we design Euler-based nonstandard finite difference versions of the Forward-Backward Sweep Method (NSFD-FBSM) that are dynamically consistent with the state variable systems; (v) we provide numerical simulations that support the theory and show the superiority of the nonstandard approach over the classical FBSM. The numerical simulations suggest that significantly increasing the coverage of the vaccine with its implementation for adults as well is essential if the recurrence of measles outbreaks is to be stopped in South Africa. They also show that the optimal control vaccination for the 2014-2016 EVD is more efficient than the exit screening intervention. en_US
dc.description.department Mathematics and Applied Mathematics en_US
dc.description.librarian hj2024 en_US
dc.description.sdg SDG-03:Good heatlh and well-being en_US
dc.description.sponsorship The National Research Foundation (NRF) under the Competitive Programme for Rated Researchers and the University of the Witwatersrand under the Science Faculty Start-up Funds for Research and the Postdoctoral Programme. en_US
dc.description.uri https://www.elsevier.com/locate/matcom en_US
dc.identifier.citation Ouemba Tassé, A.J., Kubalasa, V.B., Tsanou, B. et al. 2025, 'Nonstandard finite difference schemes for some epidemic optimal control problems', Mathematics and Computers in Simulation, vol. 228, pp. 1-22, doi : 10.1016/j.matcom.2024.08.028. en_US
dc.identifier.issn 0378-4754 (print)
dc.identifier.other 10.1016/j.matcom.2024.08.028
dc.identifier.uri http://hdl.handle.net/2263/98086
dc.language.iso en en_US
dc.publisher Elsevier en_US
dc.rights © 2024 The Author(s). Published by Elsevier B.V. on behalf of International Association for Mathematics and Computers in Simulation (IMACS). This is an open access article under the CC BY license. en_US
dc.subject Nonstandard finite difference (NSFD) schemes en_US
dc.subject Dynamic consistency en_US
dc.subject Forward backward sweep method (FBSM) en_US
dc.subject Optimal control en_US
dc.subject Measles en_US
dc.subject Ebola virus disease (EVD) en_US
dc.subject Exit screening en_US
dc.subject Vaccination en_US
dc.subject Global stability en_US
dc.subject SDG-03: Good health and well-being en_US
dc.title Nonstandard finite difference schemes for some epidemic optimal control problems en_US
dc.type Article en_US


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