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Power Frequency Harmonic Reduction and its Redistribution for Improved Filter Design in Current-Fed Switched Inverter

机译:电流馈电逆变器中的工频谐波降低及其重新分配,以改善滤波器设计

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摘要

Due to the pulsating power at the inverter output terminals, the passive storage elements of the boost stage of the current-fed switched inverter (CFSI) contain a power frequency harmonic component (100 Hz), apart from dc and switching frequency components. In prior designs, the second harmonic component is suppressed by increasing the size of the input filter inductor and capacitor or by using additional circuits. This paper presents a complete characterization of a control-based approach to suppress the power frequency harmonic component in the input inductor current of a CFSI. It also presents a comprehensive characterization of the harmonic power redistribution. Using the proposed approach, it is demonstrated that the inductor value of a CFSI is reduced by 61% for the same peak-to-peak ripple. This leads to an improvement in the conversion ratio, efficiency, and power density of the overall converter. A SiC MOSFET-based CFSI with 75-kHz switching frequency is used to verify the proposed design philosophy.
机译:由于逆变器输出端的脉动功率,电流馈电开关逆变器(CFSI)的升压级的无源存储元件除直流和开关频率分量外还包含一个工频谐波分量(100 Hz)。在现有设计中,通过增加输入滤波器电感器和电容器的尺寸或使用附加电路来抑制二次谐波分量。本文提出了一种基于控制的方法的完整特性,以抑制CFSI输入电感器电流中的工频谐波分量。它还提供了谐波功率重新分配的全面表征。使用提出的方法,证明了对于相同的峰峰值纹波,CFSI的电感值降低了61%。这导致整个转换器的转换率,效率和功率密度的改善。开关频率为75 kHz的基于SiC MOSFET的CFSI用于验证所提出的设计理念。

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