Three-phase three-level unity power factor PWM rectifier using DSP

This article presents the study and implementation of a three-phase three-level pre-regulator rectifier with digital control using a DSP. The structure has a common capacitive center point that allows the three-level operation and a low blocking-voltage stress on the power switches (half of dc link...

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Bibliographic Details
Published in2003 IEEE International Symposium on Industrial Electronics ( Cat. No.03TH8692) Vol. 1; pp. 639 - 644 vol. 1
Main Authors Mussa, S.A., Mohr, H.B.
Format Conference Proceeding
LanguageEnglish
Published IEEE 2003
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Summary:This article presents the study and implementation of a three-phase three-level pre-regulator rectifier with digital control using a DSP. The structure has a common capacitive center point that allows the three-level operation and a low blocking-voltage stress on the power switches (half of dc link voltage). The reduction of blocking voltage allows the use of low cost and low losses power devices, increasing the efficiency and the power density with reduced production cost. The control technique used aims to obtain power factor correction (PFC), regulated and balanced output voltages. With the advance of DSP controllers, digital control is increasingly used in power converts systems and offers a number of advantages like more flexibility in modification code and less sensitive to noise. However, sampling time delay, resolution of A/D converter, word length of DSP and instructions cycle time are disadvantages over analog control. Nowadays, control optimized DSP's deliver high performance, great code efficiency and optimal peripheral integration for the digital control with high level on-chip integration to deliver system cost reduction, and powerful computational abilities that enable software innovation then reducing disadvantages of a digital control.
ISBN:9780780379121
0780379128
DOI:10.1109/ISIE.2003.1267327