Abstract:
In this contribution we develop a physical model for a non contact, high-precision Lorentz force planar motion stage of linear DC brushless type. We derive physical model...Show MoreMetadata
Abstract:
In this contribution we develop a physical model for a non contact, high-precision Lorentz force planar motion stage of linear DC brushless type. We derive physical models of the relevant components and investigate sources and influences of various parasitic effects and disturbances. For the latter, phenomenological models are developed that capture the behavior observed throughout experiments. The position dependency of the Lorentz forces is reduced by a minimum power commutation. Finally, model characteristics and parameters are identified from experimental test rig data.
Published in: 2013 18th International Conference on Methods & Models in Automation & Robotics (MMAR)
Date of Conference: 26-29 August 2013
Date Added to IEEE Xplore: 25 November 2013
ISBN Information: