Bandwidth-on-demand motion control

Journal Article (2017)
Author(s)

S.J.L.M. van Loon (Eindhoven University of Technology)

B.G.B. Hunnekens (Eindhoven University of Technology)

A. Simon (Eindhoven University of Technology)

Nathan van de Wouw (TU Delft - Team Bart De Schutter, University of Minnesota, Eindhoven University of Technology)

W.P.M.H. Heemels (Eindhoven University of Technology)

Research Group
Team Bart De Schutter
DOI related publication
https://doi.org/10.1109/TCST.2017.2658192
More Info
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Publication Year
2017
Language
English
Research Group
Team Bart De Schutter
Issue number
1
Volume number
26 (2018)
Pages (from-to)
265-273

Abstract

In this brief, we introduce a "bandwidth-on-demand" variable-gain control (VGC) strategy that allows for a varying bandwidth of the feedback controller. The proposed VGC can achieve improved performance given time-varying, reference-dependent performance requirements compared with linear time-invariant (LTI) control suffering from design tradeoffs between low-frequency tracking performance and sensitivity to higher-frequency disturbances. The VGC consists of frequency-domain loop-shaped linear filters and a variable-gain element, which depends on reference information. We present easy-to-use controller design guidelines and data-based frequency-domain conditions to verify stability and convergence of the closed-loop system. Moreover, the ability of the ``bandwidth-on-demand'' controller to outperform LTI controllers is emphasized through experiments on an industrial nanopositioning motion stage.

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