Title :
Space vector PWM for a five to three matrix converter
Author :
AbdelRahim, O. ; Abu-Rub, Haitham ; Ahmed, Sabah M.
Author_Institution :
Electr. & Comput. Eng. Dept., Texas A&M Univ. at Qatar, Doha, Qatar
Abstract :
Conversion from AC to AC is very critical issue in Wind Energy Conversion System (WECS), therefore too many topologies have been proposed in the literature, one of these topologies is the direct matric converter. Direct Matrix Converter (DMC) is a powerful solution for AC/AC electric energy conversion. DMC is used to convert ac input voltage into ac output voltage but with different amplitude, frequency and different number of phases. A five to three phase matrix converter with Space Vector Pulse Width Modulation (SVPWM) is proposed in this paper. Five to three phase matrix converter is able to convert five phase input voltages into three phase output voltages with different voltage and frequency. Using Five to three phase matrix converter enables the usage of five phase generation system, which has some advantages over three phase system such as smaller size, higher efficiency and higher voltage amplitude for the same power. SVPWM is used to control the fifteen switches of the matrix. SVPWM enables to control the amplitude and frequency of the converter output current and also achieves unity power factor between input current and voltage. To investigate proper operation of the proposed control real time simulation on dspace platform has been carried out.
Keywords :
AC-AC power convertors; PWM power convertors; electric current control; frequency control; matrix convertors; wind power plants; AC-AC electric energy conversion; DMC; WECS; converter output current; direct matrix converter; dspace platform; five-three-phase matrix converter; matrix switch control; phase generation system; space vector PWM; space vector pulse width modulation; unity power factor; voltage amplitude; wind energy conversion system; Direct Matrix Converter; Space Vector Pulse Width Modulation; WECS; five to three phase;
Conference_Titel :
Applied Power Electronics Conference and Exposition (APEC), 2013 Twenty-Eighth Annual IEEE
Conference_Location :
Long Beach, CA
Print_ISBN :
978-1-4673-4354-1
Electronic_ISBN :
1048-2334
DOI :
10.1109/APEC.2013.6520765