Investigating of fractional order dengue epidemic model with ABC operator
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Anwarud Din | Abdullahi Yusuf | Zia Ullah Khan | Faiz Muhammad Khan | Yu-Pei Lv | Anwarud Din | A. Yusuf | Z. U. Khan | F. Khan | Yu-Pei Lv
[1] Abdon Atangana,et al. Dynamics of Ebola Disease in the Framework of Different Fractional Derivatives , 2019, Entropy.
[2] Abdon Atangana,et al. Modeling attractors of chaotic dynamical systems with fractal–fractional operators , 2019, Chaos, Solitons & Fractals.
[3] A. Atangana,et al. New numerical approach for fractional differential equations , 2017, 1707.08177.
[4] G. Zaman,et al. Existence, uniqueness, and stability of fractional hepatitis B epidemic model. , 2020, Chaos.
[5] M. Caputo,et al. A new Definition of Fractional Derivative without Singular Kernel , 2015 .
[6] Anwarud Din,et al. The Complex Dynamics of Hepatitis B Infected Individuals with Optimal Control , 2021, J. Syst. Sci. Complex..
[7] Abdon Atangana,et al. Analysis of fractal fractional differential equations , 2020 .
[8] Yongjin Li,et al. Controlling heroin addiction via age-structured modeling , 2020 .
[9] K. Shah,et al. Ulam stability to a toppled systems of nonlinear implicit fractional order boundary value problem , 2018, Boundary Value Problems.
[10] Ernestine Atangana,et al. Facemasks simple but powerful weapons to protect against COVID-19 spread: Can they have sides effects? , 2020, Results in Physics.
[11] Anwarud Din,et al. Mathematical analysis of spread and control of the novel corona virus (COVID-19) in China , 2020, Chaos, Solitons & Fractals.
[12] Hiroshi Nishiura,et al. Mathematical and statistical analyses of the spread of dengue , 2006 .
[13] Abdon Atangana,et al. Fractional calculus with power law: The cradle of our ancestors⋆ , 2019, The European Physical Journal Plus.
[14] José Francisco Gómez-Aguilar,et al. Modelling, analysis and simulations of some chaotic systems using derivative with Mittag–Leffler kernel , 2019, Chaos, Solitons & Fractals.
[15] K. Shah,et al. Existence and uniqueness of positive solutions to a coupled system of nonlinear fractional order differential equations with anti periodic boundary conditions , 2015 .
[16] D. Baleanu,et al. A new fractional modelling and control strategy for the outbreak of dengue fever , 2019 .
[17] Anwarud Din,et al. Stochastic dynamics of hepatitis B epidemics , 2021 .
[18] Abdon Atangana,et al. Fractional derivatives with no-index law property: Application to chaos and statistics , 2018, Chaos, Solitons & Fractals.
[19] Thabet Abdeljawad,et al. On a nonlinear fractional order model of dengue fever disease under Caputo-Fabrizio derivative , 2020 .
[20] Fatmawati,et al. The dynamics of COVID-19 with quarantined and isolation , 2020, Advances in Difference Equations.
[21] Behzad Ghanbari,et al. A new application of fractional Atangana–Baleanu derivatives: Designing ABC-fractional masks in image processing , 2020 .
[22] P. Kumam,et al. An epidemic prediction from analysis of a combined HIV-COVID-19 co-infection model via ABC-fractional operator , 2021, Alexandria Engineering Journal.
[23] Zhigui Lin,et al. A reaction-diffusion-advection model for Aedes aegypti mosquitoes in a time-periodic environment , 2019, Nonlinear Analysis: Real World Applications.
[24] Ilknur Koca,et al. Modelling the spread of Ebola virus with Atangana-Baleanu fractional operators , 2018 .
[25] Ilknur Koca,et al. Chaos in a simple nonlinear system with Atangana-Baleanu derivatives with fractional order , 2016 .
[26] Anwarud Din,et al. Mathematical analysis of dengue stochastic epidemic model , 2021 .
[27] Hailay Weldegiorgis Berhe,et al. Analysis of novel fractional COVID-19 model with real-life data application , 2021, Results in Physics.
[28] Jonathan A. Foley,et al. Global-Scale Relationships between Climate and the Dengue Fever Vector, Aedes Aegypti , 2001 .
[29] Abdon Atangana,et al. Modelling the spread of COVID-19 with new fractal-fractional operators: Can the lockdown save mankind before vaccination? , 2020, Chaos, Solitons & Fractals.
[30] Huwei Liu,et al. Generalized Consensus of Discrete-Time Multi-Agent Systems with Directed Topology and Communication Delay , 2020, Journal of Systems Science and Complexity.
[31] A. Atangana,et al. New Fractional Derivatives with Nonlocal and Non-Singular Kernel: Theory and Application to Heat Transfer Model , 2016, 1602.03408.
[32] Xinhai Li,et al. Tracking the spread of novel coronavirus (2019-nCoV) based on big data , 2020, medRxiv.
[33] K. M. Owolabi,et al. Modeling and simulation of nonlinear dynamical system in the frame of nonlocal and non-singular derivatives , 2019, Chaos, Solitons & Fractals.
[34] Dumitru Baleanu,et al. Mathematical modeling of pine wilt disease with Caputo fractional operator , 2021 .
[35] Abdon Atangana,et al. Non validity of index law in fractional calculus: A fractional differential operator with Markovian and non-Markovian properties , 2018, Physica A: Statistical Mechanics and its Applications.
[36] Abdon Atangana,et al. On the dynamics of fractional maps with power-law, exponential decay and Mittag–Leffler memory , 2019, Chaos, Solitons & Fractals.
[37] Badr Saad T. Alkahtani,et al. Analysis of the Keller-Segel Model with a Fractional Derivative without Singular Kernel , 2015, Entropy.
[38] Andrew P. Morse,et al. Suitability of European climate for the Asian tiger mosquito Aedes albopictus: recent trends and future scenarios , 2012, Journal of The Royal Society Interface.
[39] A Atangana,et al. Fractional stochastic modeling: New approach to capture more heterogeneity. , 2019, Chaos.
[40] Abdon Atangana,et al. On the formulation of Adams-Bashforth scheme with Atangana-Baleanu-Caputo fractional derivative to model chaotic problems. , 2019, Chaos.
[41] D. Baleanu,et al. Stationary distribution and extinction of stochastic coronavirus (COVID-19) epidemic model , 2020, Chaos, Solitons & Fractals.
[42] A. Atangana,et al. New numerical approximation of fractional derivative with non-local and non-singular kernel: Application to chaotic models , 2017 .
[43] T. Zhou,et al. Detecting critical transitions in the case of moderate or strong noise by binomial moments. , 2018, Physical review. E.
[44] Anwarud Din,et al. On a new conceptual mathematical model dealing the current novel coronavirus-19 infectious disease , 2020, Results in Physics.
[45] Hammad Khalil,et al. Investigation of positive solution to a coupled system of impulsive boundary value problems for nonlinear fractional order differential equations , 2015 .
[46] Anwarud Din,et al. Viral dynamics and control of hepatitis B virus (HBV) using an epidemic model , 2020 .
[47] M. Shitikova,et al. Applications of Fractional Calculus to Dynamic Problems of Linear and Nonlinear Hereditary Mechanics of Solids , 1997 .
[48] Dumitru Baleanu,et al. Chaos in a Cancer Model via Fractional Derivatives with Exponential Decay and Mittag-Leffler Law , 2017, Entropy.