Driving systems with chaotic signals

Louis M. Pecora and Thomas L. Carroll
Phys. Rev. A 44, 2374 – Published 1 August 1991
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Abstract

We generalize the idea of driving a stable system to the situation when the drive signal is chaotic. This leads to the concept of conditional Lyapunov exponents and also generalizes the usual criteria of the linear stability theorem. We show that driving with chaotic signals can be done in a robust fashion, rather insensitive to changes in system parameters. The calculation of the stability criteria leads naturally to an estimate for the convergence of the driven system to its stable state. We focus on a homogeneous driving situation that leads to the construction of synchronized chaotic subsystems. We apply these ideas to the Lorenz and Rössler systems, as well as to an electronic circuit and its numerical model.

  • Received 24 April 1991

DOI:https://doi.org/10.1103/PhysRevA.44.2374

©1991 American Physical Society

Authors & Affiliations

Louis M. Pecora and Thomas L. Carroll

  • Code 6341, Naval Research Laboratory, Washington, DC 20375

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Issue

Vol. 44, Iss. 4 — August 1991

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