DocumentCode
1278455
Title
Novel Family of Single-Stage Three-Level AC Choppers
Author
Li, Lei ; Yang, Jundong ; Zhong, Qinglong
Author_Institution
Power Eng. Coll., Nanjing Univ. of Sci. & Technol., Nanjing, China
Volume
26
Issue
2
fYear
2011
Firstpage
504
Lastpage
511
Abstract
The capacitor-clamped base cell is presented. Based on the base cell, a novel family of single-stage three-level (TL) ac choppers is proposed. The converters can directly transfer unsteady high ac voltage with distortion into regulated sinusoidal voltage with low THD. The circuit configuration is constituted of a TL converter, and input and output filters. The topological family includes buck, boost, buck-boost, Cuk, Sepic, and Zeta modes. In order to achieve a reliable TL ac-ac conversion, a double transient voltage feedback control strategy of output voltage and the voltage across the clamp capacitor is introduced in this paper. A prototype of a 500 VA 220 V ± 10% 50 Hz ac/180-240 V 50 Hz ac converter is presented with the experimental results to prove that the converters have four improved advantages simultaneously, including the lower voltage stress of power switches, the bidirectional power flow, the low total harmonic distortion of output voltage, and the higher input power factor.
Keywords
AC-AC power convertors; choppers (circuits); feedback; harmonic distortion; power capacitors; voltage control; Cuk converter; Sepic converter; TL AC-AC conversion; TL converter; Zeta modes; apparent power 500 VA; bidirectional power flow; buck-boost converter; capacitor-clamped base cell; double transient voltage feedback control strategy; filters; frequency 50 Hz; low THD; low total harmonic distortion; power switches; single-stage three-level AC choppers; sinusoidal voltage; voltage 180 V to 240 V; voltage stress; AC choppers; bidirectional power flow; capacitor-clamped base cell; double transient voltage feedback control; single stage; three level (TL);
fLanguage
English
Journal_Title
Power Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0885-8993
Type
jour
DOI
10.1109/TPEL.2010.2061866
Filename
5530406
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