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Efficiency Comparison Between Si-IGBT-Based Drive and GaN-Based Drive

机译:Si-IGBT驱动器和GaN驱动器的效率比较

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摘要

High motor efficiency, lower torque ripple, close to ideal sinusoidal motor current waveform, smaller filter size, etc. are a few of the advantages of using high-frequency pulsewidth modulaton (PWM) (in the range of 50 to 100 kHz) in motor drive applications. However, higher frequency PWM is also associated with voltage reflection and motor insulation breakdown issues. Due to high losses, Si IGBT-based inverters cannot be operated at high switching frequency. Work on SiC and GaN-based inverter has progressed and variable-frequency drives (VFDs) can now be operated efficiently at carrier frequencies in the 50 to 200 kHz range, using these devices because of extremely low turn-on and turn-off losses. At high frequency, physical and electrical rating of output filter reduces, thereby improving efficiency. Loss in ac motors also reduces because of sinusoidal waveform. All the above features put together improves system efficiency. This paper focuses on comparing the efficiency of Si-IGBT-based drive with a 6-in-1 GaN module-based drive, which is operating at a carrier frequency of 100 kHz with an output sine wave filter. Experimental results show the GaN-based drive has a better system efficiency compared to the standard Si IGBT-based drive.
机译:高电机效率,更低的转矩脉动,接近理想的正弦波电机电流波形,更小的滤波器尺寸等是在电机中使用高频脉冲宽度调制(PWM)(50至100 kHz范围)的一些优点驱动应用程序。但是,较高频率的PWM也与电压反射和电机绝缘击穿问题相关。由于高损耗,基于Si IGBT的逆变器无法在高开关频率下运行。基于SiC和GaN的逆变器的工作已经取得了进展,由于开通和关断损耗极低,因此使用这些器件,变频驱动器(VFD)现在可以在50至200 kHz范围的载波频率上高效运行。在高频下,输出滤波器的物理和电气额定值会降低,从而提高了效率。交流电动机的损耗也由于正弦波形而减少。将以上所有功能组合在一起可以提高系统效率。本文着重比较基于Si-IGBT的驱动器与基于6合1 GaN模块的驱动器的效率,后者以100 kHz的载波频率运行,并带有输出正弦波滤波器。实验结果表明,与基于标准IGBT的驱动器相比,基于GaN的驱动器具有更好的系统效率。

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