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High-precision control of LSRM based X–Y table for industrial applications
Journal article   Peer reviewed

High-precision control of LSRM based X–Y table for industrial applications

J.F. Pan, Norbert C. Cheung and Yu Zou
ISA transactions, Vol.52(1), pp.105-114
01/2013
PMID: 22981303

Abstract

Adaptive control Direct-drive Linear switched reluctance motor Parameter identification
The design of an X–Y table applying direct-drive linear switched reluctance motor (LSRM) principle is proposed in this paper. The proposed X–Y table has the characteristics of low cost, simple and stable mechanical structure. After the design procedure is introduced, an adaptive position control method based on online parameter identification and pole-placement regulation scheme is developed for the X–Y table. Experimental results prove the feasibility and its priority over a traditional PID controller with better dynamic response, static performance and robustness to disturbances. It is expected that the novel two-dimensional direct-drive system find its applications in high-precision manufacture area. ► This paper proposes the design methodology of a novel X–Y table. ► A high-precision position controller is constructed. ► Comparison between the high-precision controller and PID regulator is performed.

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