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A 50-kW High-Frequency and High-Efficiency SiC Voltage Source Inverter for More Electric Aircraft

机译:用于更多电动飞机的50 kW高频高效SiC电压源逆变器

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摘要

High power density is required for power converter in more electric aircraft due to the strict demands of volume and weight, which makes silicon carbide (SiC) extremely attractive for this application. In this paper, a prototype of 50-kW SiC two-level three-phase voltage source inverter is demonstrated with a gravimetric power density of 26 kW/kg (without inclusion of filter). A gate assisted circuit is introduced to reduce the switching loss. In addition, the ringings of voltage and current due to parasitic parameters during the switching transition can also be mitigated. A mathematical model with consideration of various parasitic parameters is developed, which illustrates the parasitic effects in high-speed switching SiC power module. The converter is operated at a switching frequency up to 100 kHz and a narrow dead band of 250 ns. The measured efficiency is 97.91%.
机译:由于对体积和重量的严格要求,在更多的电动飞机中功率转换器需要高功率密度,这使得碳化硅(SiC)在该应用中极具吸引力。本文以重量功率密度为26 kW / kg(不包括滤波器)的情况演示了50 kW SiC两电平三相电压源逆变器的原型。引入了栅极辅助电路以减少开关损耗。另外,还可以减轻由于开关转换期间的寄生参数引起的电压和电流振铃。建立了考虑各种寄生参数的数学模型,该模型说明了高速开关SiC功率模块中的寄生效应。转换器以高达100 kHz的开关频率和250 ns的窄死区工作。测得的效率为97.91%。

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