1 Department of Industrial Mathematics and Applied Statistics, Faculty of Science, Ebonyi State University, P.M.B 053 Abakaliki, Ebonyi State, Nigeria.
2 Department of Industrial Mathematics and Health Statistics, Faculty of Natural Science, David Umahi Federal University of Health Sciences, P.M.B 211, Uburu, Ebonyi State, Nigeria.
3 Department of Mathematics/Statistics, Faculty of Physical Science, Alex Ekwueme Federal University Ndufu-Alike, P.M.B. 1010, Abakalik Ebonyi State, Nigeria.
* Corresponding Author
ORCID Details
Chika Agha: https://orcid.org/0009-0005-7265-8412
Henry O. Adagba: https://orcid.org/0009-0003-8475-2874
Sunday N. Aloke: https://orcid.org/0009-0006-2366-6210
Theresa E. Efor: https://orcid.org/0000-0001-8485-1512
Okorie Nwite: https://orcid.org/0009-0007-4534-9221
Aloysious N. Ezaka: https://orcid.org/0009-0001-0378-5275
World Journal of Advanced Research and Reviews, 2026, 31(03), 107–118
Article DOI: 10.30574/wjarr.2026.31.3.2263
Received on 26 July 2026; revised on 01 September 2026; accepted on 03 September 2026
Optimal control analysis is a mathematical approach used to determine the best combination, timing, and intensity of interventions given to curb the spread of a disease over time, while considering both the disease transmission and the costs of interventions. In this study, an age-structured mathematical model for HIV/AIDS transmission dynamics in Nigeria has been formulated and analyzed. The model incorporates two distinct age classes: immature susceptibles (children under 15 years) and mature susceptibles (adults aged 15-64 years), giving rise to a system of twelve ordinary differential equations. The basic reproduction number R0 was derived using the next-generation matrix method and computed as R0>1, indicating persistent disease transmission without interventions. Optimal control characterization through Pontryagin’s maximum principle and numerical simulations over a 20-year horizon demonstrated that aggressive combined controls reduce the effective reproduction number to 0.41 and decrease peak infections by over 93%. Cost-effectiveness analysis revealed that adult prevention contributes approximately 32% of total infection reduction. The findings provide evidence-based guidance for public health policy, recommending prioritized allocation of resources toward adult prevention interventions and the implementation of combination strategies integrating prevention, screening, and treatment. This research contributes to the advancement of age-structured epidemiological modeling and supports the global initiative to end the AIDS epidemic by 2030.
HIV/AIDS, Age structured, Optimal control; Transmission dynamics
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Chika Agha Henry O. Adagba Sunday N. Aloke Theresa E. Efor Okorie Nwite and Aloysious N. Ezaka. OPTIMAL CONTROL ANALYSIS OF AN AGE-STRUCTURED MODEL OF HIV/AIDS TRANSMISSION DYNAMICS. World Journal of Advanced Research and Reviews, 2026, 31(03), 107–118. Article DOI: https://doi.org/10.30574/wjarr.2026.31.3.2263