EngineeringComputer Science

Brandon Hencey, A. Alleyne

2008.6.112008 American Control Conference

DOI: 10.1109/acc.2008.4586707

tlooto Summary

A linear matrix inequality (LMI) based method that attempts to minimize performance deterioration while explicitly restricting the anti-windup closed loop dynamics is presented.

Abstract

The anti-windup problem seeks to minimize the closed loop performance deterioration due to input nonlinearities, such as saturation, for a given linear time- invariant plant and controller. This paper presents a linear matrix inequality (LMI) based method that attempts to minimize performance deterioration while explicitly restricting the anti-windup closed loop dynamics. The restriction placed on the dynamics is described via LMI regions, which is a form of regional pole placement. Finally, the techniques discussed in this paper are demonstrated on an electro-hydraulic testbed.

Citation format

HENCEY, Brandon; ALLEYNE, A. An anti-windup technique for LMI regions with applications to a fluid power system. 2008 American Control Conference, 2008: 1519–1524.