원추형 자기 베어링 지지 무마찰 구동장치의 위치제어Position control of the frictionless positioning device suspended by cone-shaped active magnetic bearings

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A frictionless positioning device using cone-shaped active magnetic bearings(AMBs) is developed, which is driven by a brushless DC motor equipped with resolver. The cone-shaped AMB feature that the structure is simple and yet the five d.o.f. rotor motion is controlled by four magnet pairs. A linearized dynamic model, which accounts for the relationship between input voltage and output current in the cone-shaped magnet, is developed and the azimuth motion of the frictionless positioning device is modeled as the second order system. The feedback controller is designed by using linear quadratic regulator with integral action optimal control law so that the cone-shaped AMB system is stabilized and the frictionless positioning device gets the zero steady state. It is observed that the linearized dynamic model is adequate and the frictionless positioning device can achieve the tracking accuracy within the sensor resolution.
Publisher
제어·자동화·시스템학회
Issue Date
1996
Language
Korean
Citation

제어.자동화.시스템학회 논문지, v.2, no.3, pp.181 - 187

ISSN
1225-9853
URI
http://hdl.handle.net/10203/70681
Appears in Collection
ME-Journal Papers(저널논문)
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