DocumentCode
1206620
Title
Nonlinear Feedback Control of a Bearingless Brushless DC Motor
Author
Grabner, Herbert ; Amrhein, Wolfgang ; Silber, Siegfried ; Gruber, Wolfgang
Author_Institution
Linz Center of Mechatron. GmbH (LCM), Linz, Austria
Volume
15
Issue
1
fYear
2010
Firstpage
40
Lastpage
47
Abstract
The demands on bearingless drive configurations concerning performance as well as costs are high. The proposed bearingless brushless DC motor consists of five concentrated coils in a symmetrical arrangement, which generate radial forces and motor torque simultaneously in interaction with a permanent-magnet-excited disk-shaped rotor. Additionally, tilting deflection and the axial position of the rotor are stabilized passively by means of magnetic reluctance forces. Thus, system costs can be reduced significantly compared to a conventional bearingless motor setup, which actively stabilizes all 6 DOF. Due to the nonlinearity of the plant, the use of linear control design methods alone is not suitable for achieving a high operation performance. This paper introduces a novel radial position and motor torque control algorithm for a bearingless brushless DC motor based on the theory of feedback linearization. Thereby, the combined model of translatory and rotatory dynamics can be split into independent linear systems by means of a nonlinear change of system coordinates and a static-state feedback. Experimental results demonstrate the effectiveness of the proposed approach.
Keywords
DC motor drives; brushless DC motors; control nonlinearities; control system synthesis; linear systems; linearisation techniques; machine control; nonlinear control systems; permanent magnet motors; position control; rotors; stability; state feedback; torque control; bearingless brushless DC motor drive; concentrated coil; control nonlinearity; feedback linearization; linear control design method; magnetic reluctance force; motor torque control; nonlinear feedback control; permanent-magnet-excited disk-shaped rotor; radial position control; rotatory dynamics; stability; static-state feedback; symmetrical arrangement; tilting deflection; translatory dynamics; Bearingless motor; nonlinear control system; self-bearing motor;
fLanguage
English
Journal_Title
Mechatronics, IEEE/ASME Transactions on
Publisher
ieee
ISSN
1083-4435
Type
jour
DOI
10.1109/TMECH.2009.2014058
Filename
4806033
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