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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/2778
Title: Improved Model-Free Predictive Current Control for Synchronous Reluctance Motor Drives
Authors: Hsing-Cheng Yu 
Lai, Y. S.
Yu, H. C.
Cheng-Kai Lin 
Keywords: stators;inverters;current control;predictive models;reluctance motors;Current measurement;Rotors
Issue Date: 11-Feb-2016
Publisher: IEEE Xplore
Journal Volume: 63
Journal Issue: 6
Start page/Pages: 3942-3953
Source: IEEE Transactions on Industrial Electronics 
Abstract: 
An improved model-free predictive current control (IMFPCC) method for synchronous reluctance motor (SynRM) drives is presented in this paper. The main advantages of previous MFPCC are that it does not require specific SynRM models and it requires neither motor parameters nor back-EMF estimations. However, this approach has two disadvantages: 1) two current measurements are required in each sampling period, which may lead to the detection of undesirable current spikes caused by instantaneous switching inside the inverter, and 2) an unresolved problem of stagnant current-variation updates, which undermines the prediction performance. This paper intends to eliminate these two drawbacks while retaining all the merits of MFPCC. The proposed IMFPCC is simple and easy to realize. Furthermore, no pulsewidth modulation (PWM) technique is required. A 32-bit microprocessor, TMS320F2809, is utilized to implement both the proposed IMFPCC and the model-based predictive current control (MBPCC) for a performance comparison. Experiment results are provided to validate the proposed method and verify its feasibility.
URI: http://scholars.ntou.edu.tw/handle/123456789/2778
ISSN: 0278-0046
DOI: 10.1109/tie.2016.2527629
Appears in Collections:系統工程暨造船學系

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