SiC 99.55%-Efficient Fanless Three-Phase Three-Level Flying Capacitor Converter

  • Faraji, Faramarz; 
  • Bien, Ngo Bac; 
  • Tran, Thien-Dung; 
  • Hong, Daheon; 
  • Cha, Honnyong
Citations

WEB OF SCIENCE

3
Citations

SCOPUS

3

초록

The multilevel flying capacitor converter (ML-FCC) has garnered widespread recognition and adoption across various applications over decades. However, achieving an efficiency of >= 99% in the three-level (3L) version of this topology presents a significant challenge. To address this barrier and maximize the converter's efficiency to the greatest extent possible, this article proposes three discontinuous phase-shifted pulse width modulation (DPS-PWM) techniques, which are applied to a 10 kW SiC MOSFET 3L-FCC. These modulation strategies inhibit power device switching when the waveforms reach their peak values, a region referred to as the nonswitching region (NSR) in this article. Even with a substantial load imbalance (>33%), the efficiency of the converter remains largely unaltered. The highest efficiency, achieved at 75% of full load, is approximately 99.55%, while maintaining an efficiency around 99.5% at full load, measured after one hour of fanless operation. Avoiding voltage ripple on flying capacitors (FCs), enhancing the utilization of the input dc voltage/source, and preventing losses associated with FCs and dead-time during the NSR are additional advantages of the proposed modulation approaches.

키워드

Discontinuous PWM; multilevel flying capacitor converter (ML-FCC); ultrahigh efficient converter; NEUTRAL-POINT VOLTAGE; INVERTERS
제목
SiC 99.55%-Efficient Fanless Three-Phase Three-Level Flying Capacitor Converter
저자
Faraji, Faramarz; Bien, Ngo Bac; Tran, Thien-Dung; Hong, Daheon; Cha, Honnyong
DOI
10.1109/TIE.2024.3522468
발행일
2025-08
유형
Article
저널명
IEEE Transactions on Industrial Electronics
권
72
호
8
페이지
7696 ~ 7705