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Comparative Analysis of PWM Techniques for Interleaved Full Bridge Converter in an AC Battery Application

doi: 10.3390/en17020375
The AC battery utilizing second-life time batteries has gained great interest currently with the advantages of both power solutions and economic benefits. In this system, the power converters play a crucial role in the stable and effective operation of the system. This paper focused on the AC/DC stage with the chosen topology being the interleaved full bridge (IFB) converter due to its flexibility and the ability to increase the power rate of the system. For the sake of high-performance operation, various pulse width modulation (PWM) methods for this converter are analyzed. First, based on the theory of the traditional PWM methods for a full bridge inverter in combination with the interleaved technique, this paper proposed three interleaved PWM methods for the IFB converter. Secondly, the proposed methods are theoretically compared in terms of the output current, common-mode voltage, and power losses. Finally, the evaluation is carried out by both the simulation and the experimental prototype, in which the results are in good agreement with the theoretical analysis.
- Thai Nguyen University Viet Nam
- Chungnam National University Korea (Republic of)
- Hanoi University of Science and Technology Viet Nam
- Hanoi University of Sciences and Technologies Viet Nam
- Hanoi University of Science and Technology Viet Nam
power correction factor stage, interleaved full bridge converter, Technology, pulse width modulation, T, AC battery
power correction factor stage, interleaved full bridge converter, Technology, pulse width modulation, T, AC battery
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