Summary

Proceedings of the 2012 International Symposium on Nonlinear Theory and its Applications

2012

Session Number:C3L-D

Session:

Number:759

Adaptive Delayed Feedback Control Algorithm With an Iterated Feedback Gain in the Presence of Noise

Viktoras Pyragas,  Kestutis Pyragas,  

pp.759-762

Publication Date:

Online ISSN:2188-5079

DOI:10.15248/proc.1.759

PDF download (286.9KB)

Summary:
We propose an adaptive modification of the delayed feedback control (DFC) method that automatically finds the optimal feedback gain of the DFC systems. The system under control is perturbed by a Gaussian white noise with a low amplitude, and the variance of the delayed difference is estimated by a simple integrator. The problem of minimization of the variance is substituted by a minimization of some quantity that represents a generalization of the Lyapunov exponent in the presence of noise. The generalization is derived by considering a simple Langevin equation. The numerical simulations for the controlled Rössler system show that the adaptively obtained optimal feedback gains are in good quantitative agreement with the corresponding exact values.

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