Stability of periodic orbits controlled by time-delay feedback

Nonlinear Sciences – Chaotic Dynamics

Scientific paper

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5 pages REVTeX + 4 PostScript figures, compressed and self-extracting. To appear in Physics Letters A

Scientific paper

10.1016/0375-9601(95)00827-6

Extended time-delay auto-synchronization (ETDAS) is a promising technique for stabilizing unstable periodic orbits in low-dimensional dynamical systems. The technique involves continuous feedback of signals delayed by multiples of the orbit's period in a manner that is especially well-suited for fast systems and optical implementation. We show how to analyze the stability of a given implementation of ETDAS without explicit integration of time-delay equations. To illustrate the method and point out some nontrivial features of ETDAS, we obtain the domain of control for a period-one orbit of the driven, damped pendulum.

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