the Large Angle Magnetic Suspension Test Facility (LAMSTF). The modeling, design, analysis,.pdf
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the Large Angle Magnetic Suspension Test Facility (LAMSTF). The modeling, design, analysis,
ROBUST TRACKING CONTROL OF A MAGNETICALLY
SUSPENDED RIGID BODY
Kyong B. Lim and David E. Coxy
NASA Langley Research Center
Hampton, Virginia
SUMMARY
This study is an application of H1 and -synthesis for designing robust tracking controllers for
the Large Angle Magnetic Suspension Test Facility (LAMSTF). The modeling, design, analysis, simulation
and testing of a control law that guarantees tracking performance under external disturbances and model
uncertainties is investigated. The type of uncertainties considered and the tracking performance metric used
is discussed. This study demonstrates the tradeo between tracking performance at low frequencies and
robustness at high frequencies. Two sets of controllers were designed and tested. The rst set emphasized
performance over robustness while the second set traded o performance for robustness. Comparisons of
simulation and test results are also included. Current simulation and experimental results indicate that
reasonably good robust tracking performance can be attained for this system using multivariable robust
control approach.
1 Introduction
The Large Angle Magnetic Suspension Test Facility (LAMSTF) has been assembled by NASA Langley
Research Center for inhouse research in magnetic suspension technology. Reference [1] and the references
therein give a detail description of the facility and discuss in detail the open-loop dynamic properties of
the magnetic suspension system. This system represents a scaled model of a planned Large-Gap Magnetic
Suspension System (LGMSS). Robust tracking control for the LAMSTF consists of controlling the attitude
and position of the suspended rigid body in the presence of external disturbances and model uncertainties.
The motion of the suspended rigid body is in general nonlinear and hence the linear, time-invariant perturbed
motion about an equilibrium state is considered in this study.
The underlying assumption in this study is that suciently accurate nominal and uncertainty mo
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