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   A NOVEL SLIDING MODE CONTROL STRATEGY FOR A VARIABLE SPEED PERMANENT MAGNET DRIVE SYSTEM   [View] 
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 Author(s)   J. Wang; D. W. Shimmin 
 Abstract   A new sliding mode controller is proposed for variable speed drive systems which incorporated high field permanent magnet motors. The hardware uses a commercially available three-phase pulse-width modulator to drive the power bridge. The controller has two conventional current-tracking loops with d-q axis decoupling, and an optimal sliding mode speed control algorithm. The sliding mode parameters are directly related to the required system performance in the time domain, simplifying the design procedure. The simulation and experimental results show that the overall system performance is entirely satisfactory. 
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Filename:Unnamed file
Filesize:2.736 MB
 Type   Members Only 
 Date   Last modified 2019-05-21 by System