DocumentCode :
1240632
Title :
An improved robust predictive current regulation algorithm
Author :
Bode, Gerwich H. ; Loh, Poh Chiang ; Newman, Michael John ; Holmes, Donald Grahame
Author_Institution :
Dept. of Electr. & Comput. Syst. Eng., Monash Univ., Clayton, Vic., Australia
Volume :
41
Issue :
6
fYear :
2005
Firstpage :
1720
Lastpage :
1733
Abstract :
Current regulation techniques for pulsewidth-modulated (PWM) voltage source inverters (VSIs) can be classified as either linear or nonlinear. Linear techniques consist principally of either a proportional-integral (PI) or a predictive current control strategy, while nonlinear schemes are usually based on a hysteresis strategy. Of the two linear strategies, predictive current control offers the advantages of precise current tracking with minimal distortion and can also be fully implemented on a digital platform. However, the conventional implementation of the predictive current regulation (PCR) algorithm is sensitive to noise and errors in the load inductance estimate, particularly when the back EMF is also estimated. This paper presents an improved PCR algorithm that retains all the benefits associated with PCR while achieving significantly increased robustness to load parameter mismatch and reduced zero current clamped oscillation effects. It is also relatively insensitive to noise in the sampled current measurements. The algorithm is equally applicable to variable fundamental frequency applications such as variable speed drives and to fixed fundamental frequency applications such as PWM rectifier systems or active filters. Simulation and experimental results are presented to confirm the improved robustness of the new algorithm.
Keywords :
PI control; PWM invertors; PWM rectifiers; active filters; electric current control; predictive control; robust control; variable speed drives; PI control; PWM rectifier system; PWM voltage source inverters; back EMF; current tracking; hysteresis strategy; predictive current control; predictive current regulation algorithm; proportional-integral control; pulsewidth modulation voltage source inverters; reduced zero current clamped oscillation effects; variable speed drives; Current control; Frequency; Hysteresis; Noise robustness; Nonlinear distortion; Prediction algorithms; Pulse inverters; Pulse width modulation; Pulse width modulation inverters; Voltage; Digital current control; predictive current regulation; pulsewidth-modulated inverters;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2005.858324
Filename :
1542328
Link To Document :
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