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Self-Tuning Position Control for the Linear Long-Stroke, Compound Switched Reluctance Conveyance Machine
Journal article   Peer reviewed

Self-Tuning Position Control for the Linear Long-Stroke, Compound Switched Reluctance Conveyance Machine

J. F. Pan, Weiyu Wang, Eric Cheung, Norbert Cheung, Xiaoyu Wu, Bo Zhang and Ngai Man Cheung
International journal of precision engineering and manufacturing, Vol.19(3), pp.387-394
01/03/2018

Abstract

Engineering General Industrial and Production Engineering Materials Science Regular Paper
This paper proposes a long-stroke linear switched reluctance machine (LSRM) with a primary and a secondary translator for industrial conveyance applications. The secondary one can translate according to the primary one so that linear compound motions can be achieved. Considering the fact that either one translator imposes a time-variant, nonlinear disturbance onto the other, the selftuning position controllers are implemented for the proposed linear compound machine and experimental results demonstrate that the absolute steady-state error values can fall into 0.03 mm and 0.05 mm for the secondary and primary translator, respectively. A composite absolute precision of less than 0.6 mm can be achieved under the proposed control strategy

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