Iron Loss Properties of Amorphous Ring under High-Frequency SiC Inverter Excitation with Different Dead-times Using High Sampling Rate

N. M. Thao, K. Fujisaki, Duc-Kien Ngo, Kenya Naruse
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引用次数: 1

Abstract

In recent years, amorphous materials have been used for inductor and transformer cores to improve the efficiency of high power-density converters utilizing wide-bandgap semiconductor devices. In which, issues of the iron loss in magnetic cores under different operating conditions of these converters are important and should be considered thoroughly. Therefore, this paper presents an experimental investigation of the iron loss characteristics of an amorphous ring core under the silicon carbide (SiC) inverter excitation at high carrier frequencies of up to 200 kHz using a high sampling rate of up to 5 GS/s in measurement. Effects of large changes in the dead-time and modulation index of the SiC inverter on the iron loss density of the amorphous ring are also examined. Moreover, impacts of several key factors, such as the fast-rising time in nanoseconds, ringing phenomenon occurring at megahertz frequency, total harmonic distortion (THD) of the ring's voltage, and minor B-H loops, on the increase in the iron loss density are analyzed. In addition, the iron loss properties of the amorphous ring core are compared to that of another ring core made from a non-oriented electrical steel for reference. Finally, concise physic-based insights and explanations for the main results are shown.
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高采样率下不同死区时间高频SiC逆变器励磁下非晶环的铁损特性
近年来,非晶材料已被用于电感和变压器铁心,以提高利用宽带隙半导体器件的高功率密度变换器的效率。其中,变流器在不同工况下的铁芯铁损问题是重要的,值得深入研究。因此,本文采用高达5 GS/s的高采样率测量了在高达200 kHz的载流子频率下,在碳化硅(SiC)逆变器励磁下非晶环形铁芯的铁损耗特性。研究了SiC逆变器的死区时间和调制指数的变化对非晶环铁损密度的影响。此外,还分析了纳秒级快速上升时间、兆赫频率环形现象、环形电压总谐波失真(THD)和较小的B-H回路等关键因素对铁损密度增加的影响。此外,还将非晶环形铁芯的铁损性能与另一种由无取向电工钢制成的环形铁芯进行了比较,以供参考。最后,对主要结果给出了简明的基于物理的见解和解释。
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