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AuthorRahman K.
AuthorAl-Emadi N.
AuthorAl-Hitmi M.
AuthorIqbal A.
Available date2020-04-27T08:34:18Z
Publication Date2019
Publication NameIET Electric Power Applications
ResourceScopus
ISSN17518660
URIhttp://dx.doi.org/10.1049/iet-epa.2018.5188
URIhttp://hdl.handle.net/10576/14527
AbstractThe pulse-width modulation (PWM)-controlled modern electric drives causes some serious problems such as the generation of common-mode voltage (CMV) and high dv/dt. The CMV might cause high-frequency leakage currents that flow through the possible path that is bearing of the motor. Thus, the flow of current through the motor bearing leads to its premature failure. One of the main challenges in developing PWM methods for control of motor drives is the problem of CMV and its reduction/elimination. In this study, a modulation technique based on space-vector approach is developed to reduce the CMV in a three-to-seven-phase direct matrix converter. CMV reduction becomes possible by selecting suitable zero-voltage vectors for a specific duration and the use of a selected set of active vectors for the output voltage synthesis. The proposed space-vector PWM (SVPWM) for the reduction of CMV is performed with a seven-phase R-L load to show the viability of the proposed technique. The proposed SVPWM technique is implemented experimentally in dSPACE working in conjunction with field-programmable gate array processor board using a system generator. Hardware results that validate the proposed control algorithm are discussed. - The Institution of Engineering and Technology 2019
SponsorThis publication was made possible by the Qatar University internal Grant QUCP-CENG-17\18-2. The statements made herein are solely the responsibility of the authors.
Languageen
PublisherInstitution of Engineering and Technology
Subjectelectric drives
field programmable gate arrays
leakage currents
matrix convertors
motor drives
PWM invertors
switching convertors
TitleCMV reduction in a three-to-seven phase direct matrix converter using SVPWM
TypeArticle
Pagination1219-1228
Issue Number8
Volume Number13


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