An Algorithm for Hopf Bifurcation Analysis of a Delayed Reaction-Diffusion Model
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Date
2017
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Springer
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Abstract
We present an algorithm for determining the existence of a Hopf bifurcation of a system of delayed reaction-diffusion equations with the Neumann boundary conditions. The conditions on parameters of the system that a Hopf bifurcation occurs as the delay parameter passes through a critical value are determined. These conditions depend on the coefficients of the characteristic equation corresponding to linearization of the system. Furthermore, an algorithm to obtain the formulas for determining the direction of the Hopf bifurcation, the stability, and period of the periodic solution is given by using the Poincare normal form and the center manifold theorem. Finally, we give several examples and some numerical simulations to show the effectiveness of the algorithm proposed.
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Merdan, Huseyin/0000-0003-2311-5348
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Keywords
Stability, Hopf Bifurcation, Delay Differential Equations, Reaction-Diffusion Equation, Time Delay, Periodic Solutions
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Citation
Kayan, Ş., Merdan, H. (2017). An algorithm for Hopf bifurcation analysis of a delayed reaction-diffusion model. Nonlinear Dynamics, 89(1), 345-366. http://dx.doi.org/10.1007/s11071-017-3458-5
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12
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Volume
89
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1
Start Page
345
End Page
366
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