Analysis of Hopf bifurcations in differential equations with state-dependent delays via multiple scales method


Abstract:

In this paper, a multiple scales method (MMS) is employed to analyze Hopf bifurcations in differential equations with two linearly state-dependent time delays. Firstly, the linear stability of the linearized equation near the only equilibrium (the trivial equilibrium) is performed analytically. Then, the case for which the coefficients of the delayed terms are small, the method of multiple scales (MMS) bypassing the need to use center manifold reduction allows the normal form to be easily obtained. Furthermore, the stability and bifurcation analysis are undertaken for the normal form to determine the types of the Hopf bifurcation. The proposed method can not only determine the direction of Hopf bifurcation but also its type. The numerical simulation results agree well with the analytical pbkp_redictions. This suggests that the MMS employed in this paper provides a simple, accurate and effective means of analyzing Hopf bifurcations in the state-dependent delayed differential equations.

Año de publicación:

2018

Keywords:

  • stability analysis
  • formal linearization
  • state-dependent delays
  • Hopf bifurcation
  • multiple scales method

Fuente:

scopusscopus

Tipo de documento:

Article

Estado:

Acceso restringido

Áreas de conocimiento:

  • Sistema dinámico
  • Optimización matemática
  • Matemáticas aplicadas

Áreas temáticas:

  • Análisis
  • Ciencias Naturales y Matemáticas
  • Geometría