DocumentCode :
1466001
Title :
Leakage Current Reduction in a Single-Phase Bidirectional AC–DC Full-Bridge Inverter
Author :
Dong, Dong ; Luo, Fang ; Boroyevich, Dushan ; Mattavelli, Paolo
Author_Institution :
Center for Power Electron. Syst., Virginia Tech, Blacksburg, VA, USA
Volume :
27
Issue :
10
fYear :
2012
Firstpage :
4281
Lastpage :
4291
Abstract :
The leakage current in grid-interface converter systems presents a considerable issue in regard to safety and efficiency. The full-bridge inverter is a well-accepted topology in single-phase power conversion applications. The high-frequency pulsewidth modulation (PWM) modulation schemes are normally applied to the full-bridge topology for smaller ac filter size, which, however, generates a high-frequency dc-side leakage current, resulting in an enormous negative impact on dc components, such as photovoltaic panels and energy storage elements. In this paper, a modified full-bridge inverter topology to reduce the dc-side leakage current as well as to mitigate the ac-side common-mode electromagnetic interference noise is presented. Several considerations are discussed, such as the PWM modulation and filter design. Compared to the other existing methods, the proposed solution provides a reliable performance for bidirectional operation, minimum additional components, low cost, and a simple design process.
Keywords :
AC-DC power convertors; PWM invertors; electromagnetic interference; leakage currents; power conversion; AC filter size; PWM modulation schemes; ac-side common-mode electromagnetic interference noise; dc components; energy storage elements; filter design; grid-interface converter systems; high-frequency dc-side leakage current; high-frequency pulsewidth modulation; leakage current reduction; modified full-bridge inverter topology; photovoltaic panels; single-phase bidirectional AC-DC full-bridge inverter; single-phase power conversion; Bidirectional control; Delta modulation; Inverters; Leakage current; Pulse width modulation; Topology; Full-bridge; leakage current; single-phase;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2012.2190300
Filename :
6166382
Link To Document :
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