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Impact of a non-conventional PWM strategy on the DC link film capacitor sizing

机译:非常规PWM策略对直流环节薄膜电容器尺寸的影响

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In this paper, an analysis of the DC-link voltage ripple for classic and non-conventional Pulse Width Modulation (PWM) strategies such as the Unified-Double Carrier PWM (Uni-DC PWM) is derived. A focus will be held on the case where Film capacitors are applied. The latter have a very low Equivalent Series Resistance (ESR) which is responsible of losses in real capacitors (especially Electrolytic ones) hence, in the frequency range where the PWM harmonics do exist, a Film capacitor can be considered as having a pure capacitive impedance where the DC-link voltage ripple becomes highly dependent on the harmonic frequency distribution. Thus, it is important to determine the exact harmonic components needed for an analysis to be effective and this is where the double Fourier integral provides a mathematically rigorous application for studying PWM characteristics in the frequency domain. Despite the fact that the main objective of the Uni-DC PWM is to reduce the capacitor's RMS current, results show a reverse impact on the DC-link voltage ripple when a Film capacitor is used.
机译:本文对经典和非常规脉冲宽度调制(PWM)策略(例如,统一双载波PWM(Uni-DC PWM))的直流母线电压纹波进行了分析。重点将放在应用薄膜电容器的情况下。后者的等效串联电阻(ESR)非常低,导致实际电容器(尤其是电解电容器)中的损耗,因此,在存在PWM谐波的频率范围内,可以将薄膜电容器视为具有纯电容性阻抗直流母线电压纹波高度依赖于谐波频率分布。因此,重要的是确定有效进行分析所需的确切谐波分量,这是双重傅里叶积分为数学研究频域PWM特性提供严格数学应用的地方。尽管Uni-DC PWM的主要目的是减少电容器的RMS电流,但结果表明,当使用薄膜电容器时,会对DC链路电压纹波产生反向影响。

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