International Journal of Engineering and Management Research (IJEMR)
  • Year: 2018
  • Volume: 8
  • Issue: 1

Dynamical System of Dengue Disease Transmission Involving the Aquatic Life Cycle

  • Author:
  • Christari Lois Palit1,, Paian Sianturi2, Jaharuddin 2
  • Total Page Count: 7
  • Page Number: 201 to 207

1Student, Department of Mathematics, Bogor Agricultural University, Indonesia

2Lecturer, Department of Mathematics, Bogor Agricultural University, Indonesia

*Corresponding Author: christari.palit.cp@gmail.com

Online published on 14 May, 2018.

Abstract

In this article, the mathematical model for dengue disease transmission involving the aquatic life cycle was studied. Further, the equilibrium points of the mathematical model developed were determined and the stability criteria were also derived. The criteria above mentioned were dependent on the basic reproduction number which was defined as the expected value of susceptible individual got infected caused by a single infected individual. The results show that the disease-free equilibrium is locally asymptotically stable when and the endemic equilibrium is locally asymptotically stable when. Numerical simulations are provided to show the dynamics of both human and mosquito populations upon changes of particular parameter values.

Keywords

Dengue, Aquatic, Basic reproduction number