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Analysis of a host-vector disease model with fixed moments pulse interventions

1LAboratoire de Mathématiques et Informatique, Université Joseph KI-ZERBO, 03 BP 7021 Ouagadougou 03, Burkina Faso.
* Corresponding Author: Ali Traore. Email: traoreali.univ@yahoo.fr

Annals of Communications in Mathematics 2026, 9(3), 1. https://doi.org/10.62072/acm.2026.090XX(registering DOI)
Received: 09 June 2026 |
Accepted: 19 July 2026 |
Published: XX July 2026

Abstract:

In our study, we propose a vector-host epidemic model with fixed-time pulse interventions guided by population size of susceptible humans and susceptible vectors. This approach aims to reflect the situation where public health interventions, namely, vaccination campaigns, mass treatments, insecticide spraying, or sterile mosquito releases, are generally implemented periodically rather than continuously. A saturated incidence function is used to fit the situation where the number of infective cases is getting larger with the limited medical facilities. The model incorporates a general rule of implementation of control measures such us vaccination, treatment and mosquitoes elimination. We theoretically investigate the dynamic behavior with the appearance of (k + m)T – periodic solutions. Firstly, we derive the existence and stability of the order-1 (k + 1)T – disease-free periodic solution with nonnegative integer k and the order-m (1 + m)T -disease-free periodic solution with m being any positive integer. Furthermore, we study the existence and stability of the disease-free (1 + 2)T -periodic solution. In addition, numerical simulations are performed to support the theoretical results. Our results indicate that there exists a critical monitoring period or vaccination rate such that the intervention strategy can successfully control the disease.

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Cite This Article

B. Ouedraogo and A. Traore.
Analysis of a host-vector disease model with fixed moments pulse interventions.
Annals of Communications in Mathematics
2026,
9(3):
1.
https://doi.org/10.62072/acm.2026.090XX(registering DOI)

Creative Commons License
Copyright © 2026 by the Author(s). Licensee Techno Sky Publications. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).

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