Title
A New SVM Method for an Indirect Matrix Converter With Common-Mode Voltage Reduction.
Abstract
A new space vector modulation (SVM) process for use in an indirect matrix converter (IMC) has been proposed in this paper to reduce the common-mode voltage (CMV) in a high voltage transfer ratio. The principles of selecting suitable active vectors and then properly arranging the switching sequence in the inverter stage of the IMC are described. The IMC with the new SVM method significantly reduces the peak-to-peak voltage of the CMV without any extra hardware. The new SVM method has some other advantages such as a lower total harmonic distortion of line-to-line output voltage and a reduced switching loss at the inverter stage through a minimum number of switching commutations as compared to the conventional reduced CMV-SVM method. The proposed modulation can be easily implemented in software without any additional hardware modifications. Both simulation and experimental results are shown to demonstrate that the new SVM method can generate good performance of the input/output waveforms and provide CMV reduction.
Year
DOI
Venue
2014
10.1109/TII.2013.2255032
IEEE Trans. Industrial Informatics
Keywords
Field
DocType
harmonic distortion,matrix convertors,switching convertors,CMV reduction,active vectors,common-mode voltage reduction,hardware modification,high-voltage transfer ratio,indirect matrix converter,input-output waveforms,inverter stage,line-to-line output voltage,peak-to-peak voltage,reduced CMV-SVM method,reduced switching loss,space vector modulation process,switching commutations,switching sequence,total harmonic distortion,Common-mode voltage (CMV),indirect matrix converter (IMC),space vector modulation (SVM),voltage transfer ratio
Inverter,Total harmonic distortion,Control theory,Computer science,Voltage,Support vector machine,Modulation,Control engineering,Electronic engineering,Common-mode signal,Space vector modulation,High voltage
Journal
Volume
Issue
ISSN
10
1
1551-3203
Citations 
PageRank 
References 
2
0.39
0
Authors
2
Name
Order
Citations
PageRank
Tuyen D. Nguyen151.53
Hong-Hee Lee236342.82