基于3L-TNPC的高效高功率密度三相450kva SiC-MOSFET逆变器

Zhao Yuan, A. Emon, Zhongjing Wang, Hongwu Peng, B. Narayanasamy, M. Hassan, Yalin Wang, A. Deshpande, F. Luo
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引用次数: 3

摘要

本文介绍了一种采用3电平t型中性点箝位变换器(3L-TNPC)的450kva逆变系统样机。该样机具有高功率密度和高效率设计。该设计重点改进了母线结构,实现了比现有文献中温升有限的3电平变换器更低的杂散电感。改进后的功率环设计为加快开关速度提供了足够的空间。通过选择最佳栅极电阻(1 Ω),可以实现超过67.7%的开关损耗降低。本文还着重于信号传感、调理电路和控制器电路的紧凑集成,以提高功率密度。讨论了传感系统的设计策略,以优化紧凑传感与噪声失真之间的权衡。因此,变换器的功率密度达到26.6 kW/L。在70 kHz开关频率下,在266 kVA下测量到99.47%的峰值效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Three-phase 450 kVA SiC-MOSFET Based Inverter With High Efficiency and High Power Density By Using 3L-TNPC
This paper presents a prototype of a 450 kVA inverter system by using 3-level T-type neutral-point-clamped converter (3L-TNPC). The prototype features high-power density and high-efficiency design. The design highlights an improved busbar structure, which achieves lower stray inductance than published literature of 3-level converters with limited temperature rise. The improved power-loop design provides sufficient room for accelerating switching speed. Over 67.7% of switching loss reduction is achieved by choosing optimal gate resistance (1 Ω). The paper also focuses on compact integration of signal sensing, conditioning circuits, and controller circuits to improve power density. The design strategy for the sensing system is discussed to optimize the trade-off between compact sensing and noise distortion. As a result, the converter reaches the power density of 26.6 kW/L. The peak efficiency of 99.47% is measured at 266 kVA under 70 kHz switching frequency.
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