DYNAMIC ANALYSIS OF THE COVID-19 MODEL WITH ISOLATION FACTORS

  • Atika Ratna Dewi Data Science Study Program, Faculty of Informatics, Institut Teknologi Telkom Purwokerto
  • Ridho Ananda Industrial Engineering Study Program, Faculty of Industrial Engineering and Design, Institut Teknologi Telkom Purwokerto
  • Utti Marina Rifanti Telecommunication Engineering Study Program, Faculty of Telecommunication and Electrical Engineering, Telkom Institute of Technology Purwokerto
Keywords: covid-19, sir model, isolation, equilibrium point, basic reproduction ratio number

Abstract

Covid-19 is a type of infectious disease caused by SARS Cov-2. This virus has spread throughout the world to cause a pandemic. This study aimed to model and analyze the spread of Covid-19 with the isolation factor. The spread of Covid-19 can be made into an epidemic model by taking into account the population of susceptible humans (S), infected humans (I), isolated humans (L), and recovered humans (R). The method used in this research was to derive a non-linear system of differential equations model, complete the model qualitatively, find the primary reproduction ratio ( , see the model’s behavior by analyzing the dynamics of the equilibrium point and make model simulations. This model has a disease-free equilibrium point that is asymptotically stable, while at the equilibrium point, the endemic is unstable. The results of the model simulation and analysis of the  value indicate that the chance of successful Covid-19 spread and the isolation factor is a significant controlled parameter in reducing the value.

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Published
2022-03-21
How to Cite
[1]
A. Dewi, R. Ananda, and U. Rifanti, “DYNAMIC ANALYSIS OF THE COVID-19 MODEL WITH ISOLATION FACTORS”, BAREKENG: J. Math. & App., vol. 16, no. 1, pp. 047-056, Mar. 2022.