In this paper we present an efficient branch-following procedure that can be used not only to compute branches of periodic solutions of periodically forced dynamical systems but also to determine the stability of the periodic solutions. The procedure combines Broyden's method with a subspace iteration method to determine the dominant eigenvalues. The method has connections with the hybrid Newton--Picard methods developed by Lust et al. in [SIAM J. Sci. Comput., 19 (1998) pp. 1188--1209]. A convergence analysis of the procedure is presented. The method is applied to the computation of periodic states of a reverse flow reactor, and its performance is compared with two variants of the hybrid Newton--Picard method
Previous work used bifurcation diagrams and Lyapunov exponents to explore the dynamics of the forced...
ABSTRACT. Modifications are proposed to the Davidenko-Broyden algorithm for the solution of a system...
Continuation is an efficient algorithm for finding solutions of systems of nonlinear algebraic equat...
In this paper we present an efficient branch-following procedure that can be used not only to comput...
In this paper we present a shooting method in combination with a hybrid Newton–Picard method to comp...
We present a continuation technique for branches of periodic solutions which can be applied to auton...
The aim of this paper is to present a limited memory iterative method, called the Broyden Rank Reduc...
International audienceThis paper is concerned with the efficient computation of periodic orbits in l...
There is a growing interest in the study of periodic phenomena in largescale nonlinear dynamical sys...
The study of the stability of a dynamical system described by a set of partial differential equation...
International audienceIn this paper, we present a validation on a practical example of a harmonic-ba...
When determining the steady-state output of lightly damped nonlinear systems with a stable periodic ...
Previous work used bifurcation diagrams and Lyapunov exponents to explore the dynamics of the forced...
ABSTRACT. Modifications are proposed to the Davidenko-Broyden algorithm for the solution of a system...
Continuation is an efficient algorithm for finding solutions of systems of nonlinear algebraic equat...
In this paper we present an efficient branch-following procedure that can be used not only to comput...
In this paper we present a shooting method in combination with a hybrid Newton–Picard method to comp...
We present a continuation technique for branches of periodic solutions which can be applied to auton...
The aim of this paper is to present a limited memory iterative method, called the Broyden Rank Reduc...
International audienceThis paper is concerned with the efficient computation of periodic orbits in l...
There is a growing interest in the study of periodic phenomena in largescale nonlinear dynamical sys...
The study of the stability of a dynamical system described by a set of partial differential equation...
International audienceIn this paper, we present a validation on a practical example of a harmonic-ba...
When determining the steady-state output of lightly damped nonlinear systems with a stable periodic ...
Previous work used bifurcation diagrams and Lyapunov exponents to explore the dynamics of the forced...
ABSTRACT. Modifications are proposed to the Davidenko-Broyden algorithm for the solution of a system...
Continuation is an efficient algorithm for finding solutions of systems of nonlinear algebraic equat...