CNCS Center for Nonlinear and Complex Systems
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Publications [#304615] of Joshua Socolar

Papers Published

  1. Harrington, I; Socolar, JES, Design and robustness of delayed feedback controllers for discrete systems., Physical review. E, Statistical, nonlinear, and soft matter physics, vol. 69 no. 5 Pt 2 (May, 2004), pp. 056207, ISSN 1539-3755 [doi]
    (last updated on 2024/04/19)

    Abstract:
    We study a matrix form of time-delay feedback control in the context of discrete time maps of high dimension. In almost all cases where standard proportional feedback control methods can achieve control, time-delay feedback controllers containing only static elements can be designed to achieve identical linear stability properties. Analysis of an example involving a ring of coupled maps that can be controlled at only two sites demonstrates that the time-delay controller equivalent to a standard optimal controller can be equally robust in the presence of noise, except at special points in parameter space where the uncontrolled system has a mode with Floquet multiplier exactly equal to 1. Numerical simulations confirm the results of the analysis.