Title
DSP-Based Implementation of Control Strategy for Sinusoidal Input Line Current Imposition for a Hybrid Three-Phase Rectifier.
Abstract
Due to the considerable increase of electronic power processing devices in various segments of industry, the necessity to control and limit the harmonic content of current injected into the distribution systems through the development of pre-regulator converters, has become ever more apparent. Concomitantly, the development of new microprocessors has provided the possibility for the design of sophisticated control algorithms for power electronics converters. In this context, this paper presents an analysis of a hybrid three-phase rectifier developed for power factor correction to be used as an interface of power electronics converters. The main feature of the proposed structure is the power-sharing technique, which assures robustness, cost reduction, and high power density. In this paper, the authors present a complete discussion concerning the controlled rectifier's power contribution and also a complete analysis concerning the total harmonic distortion of current. Mathematical modeling analysis using state space theory is also presented. Experimental results of a 5-kW laboratory prototype using DSP-based control technique are presented in order to corroborate the theoretical analysis.
Year
DOI
Venue
2013
10.1109/TII.2012.2227268
IEEE Trans. Industrial Informatics
Keywords
Field
DocType
digital signal processing chips,electric current control,harmonic distortion,power convertors,power factor correction,rectifiers,state-space methods,DSP-based control technique,electronic power processing device,harmonic content,hybrid three-phase rectifier,mathematical modeling analysis,microprocessor,power electronics converter,power factor correction,power-sharing technique,preregulator converter,sinusoidal input line current imposition,state space theory,total harmonic distortion,Digital signal processor (DSP),harmonic distortion,hybrid rectifiers,power factor correction
Rectifier,Total harmonic distortion,Computer science,Power factor,Harmonic,Electronic engineering,Control engineering,AC power,Converters,Harmonics,Electrical engineering,Switched-mode power supply
Journal
Volume
Issue
ISSN
9
4
1551-3203
Citations 
PageRank 
References 
0
0.34
6
Authors
7