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New considerations in the input filter design of a three-phase buck-type PWM rectifier for aircraft applications

机译:飞机应用三相降压型PWM整流器的输入滤波器设计中的新注意事项

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An EMI filter for a three-phase buck-type medium power pulse-width modulation rectifier is designed. This filter considers differential mode noise and complies with MIL-STD-461E for the frequency range of 10kHz to 10MHz. In industrial applications, the frequency range of the standard starts at 150kHz and the designer typically uses a switching frequency of 28kHz because the fifth harmonic is out of the range. This approach is not valid for aircraft applications. In order to design the switching frequency in aircraft applications, the power losses in the semiconductors and the weight of the reactive components should be considered. The proposed design is based on a harmonic analysis of the rectifier input current and an analytical study of the input filter. The classical industrial design does not consider the inductive effect in the filter design because the grid frequency is 50/60Hz. However, in the aircraft applications, the grid frequency is 400Hz and the inductance cannot be neglected. The proposed design considers the inductance and the capacitance effect of the filter in order to obtain unitary power factor at full power. In the optimization process, several filters are designed for different switching frequencies of the converter. In addition, designs from single to five stages are considered. The power losses of the converter plus the EMI filter are estimated at these switching frequencies. Considering overall losses and minimal filter volume, the optimal switching frequency is selected.
机译:设计了一种用于三相降压型中功率脉宽调制整流器的EMI滤波器。该滤波器考虑了差模噪声,并在10kHz至10MHz的频率范围内符合MIL-STD-461E。在工业应用中,标准的频率范围始于150kHz,设计人员通常使用28kHz的开关频率,因为五次谐波不在此范围内。该方法不适用于飞机应用。为了设计飞机应用中的开关频率,应考虑半导体中的功率损耗和电抗组件的重量。提出的设计基于对整流器输入电流的谐波分析和对输入滤波器的分析研究。传统的工业设计没有考虑滤波器设计中的感应效应,因为电网频率为50 / 60Hz。但是,在飞机应用中,电网频率为400Hz,并且电感不能忽略。所提出的设计考虑了滤波器的电感和电容效应,以便在满功率下获得单位功率因数。在优化过程中,针对转换器的不同开关频率设计了多个滤波器。此外,还考虑了从单阶段到五个阶段的设计。在这些开关频率下估算转换器和EMI滤波器的功率损耗。考虑到总损耗和最小的滤波器体积,选择最佳的开关频率。

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