A comprehensive analysis of the stochastic fractal–fractional tuberculosis model via Mittag-Leffler kernel and white noise

dc.contributor.authorRashid, Saima
dc.contributor.authorIqbal, Muhammad Kashif
dc.contributor.authorAlshehri, Ahmed M.
dc.contributor.authorAshraf, Rehana
dc.contributor.authorJarad, Fahd
dc.contributor.authorID234808tr_TR
dc.contributor.departmentÇankaya Üniversitesi, Fen-Edebiyat Fakültesi, Matematik Bölümütr_TR
dc.date.accessioned2024-02-07T07:05:02Z
dc.date.available2024-02-07T07:05:02Z
dc.date.issued2022-08
dc.description.abstractIn this research, we develop a stochastic framework for analysing tuberculosis (TB) evolution that includes newborn immunization via the fractal–fractional (F–F) derivative in the Atangana–Baleanu sense. The population is divided into four groups by this system: susceptibility S(ξ), infectious I(ξ), immunized infants V(ξ), and restored R(ξ). The stochastic technique is used to describe and assess the invariant region, basic reproduction number, and local stability for disease-free equilibrium. This strategy has significant modelling difficulties since it ignores the unpredictability of the system phenomena. To prevent such problems, we convert the deterministic strategy to a randomized one, which seems recognized to have a vital influence by adding an element of authenticity and fractional approach. Owing to the model intricacies, we established the existence-uniqueness of the model and the extinction of infection was carried out. We conducted a number of experimental tests using the F–F derivative approach and obtained some intriguing modelling findings in terms of (i) varying fractional-order (φ) and fixing fractal-dimension (ω), (ii) varying ω and fixing φ, and (iii) varying both φ and ω, indicating that a combination of such a scheme can enhance infant vaccination and adequate intervention of infectious patients can give a significant boost.tr_TR
dc.identifier.citationRashid, Saima;...et.al. (2022). "A comprehensive analysis of the stochastic fractal–fractional tuberculosis model via Mittag-Leffler kernel and white noise", Results in Physics, Vol.39.tr_TR
dc.identifier.issn22113797
dc.identifier.urihttp://hdl.handle.net/20.500.12416/7123
dc.identifier.volume39tr_TR
dc.language.isoengtr_TR
dc.relation.isversionof10.1016/j.rinp.2022.105764tr_TR
dc.relation.journalResults in Physicstr_TR
dc.rightsinfo:eu-repo/semantics/openAccesstr_TR
dc.subjectFractal–Fractal Differential Operatorstr_TR
dc.subjectNumerical Solutionstr_TR
dc.subjectQualitative Analysistr_TR
dc.subjectStochastic Modellingtr_TR
dc.subjectTuberculosis Modeltr_TR
dc.titleA comprehensive analysis of the stochastic fractal–fractional tuberculosis model via Mittag-Leffler kernel and white noisetr_TR
dc.typearticletr_TR

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