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High input power factor adjustable-speed drive system based on an electrolytic capacitor-less single-stage boost inverter

机译:基于无电解电容器的单级升压逆变器的高输入功率因数可调速驱动系统

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This paper presents an electrolytic capacitor-less adjustable-speed drive (ASD) system fed by single-phase power supply with almost unit input power factor. The tapped inductor quasi-Z-source inverter (TL-qZSI) is used to replace the dc-bus electrolytic capacitors, which can maintain the dc-bus voltage during voltage sag, and enhance system reliability. Without the electrolytic capacitors to balance the input and output power, higher input power factor will lead to more low-frequency harmonic distortion of dc-bus voltage due to the 2nd harmonic current drawn by the input. The proposed Low-frequency Harmonics Minimization (LFHM) method by using the shoot-through zero state and input Power Factor Improvement PWM (PFI-PWM) by using the modulation index are presented, which can greatly reduce the low-frequency dc-bus voltage ripple while improving the input power factor. The system structure and the proposed LFHM and PFI-PWM method are analyzed in detail. The effectiveness of the proposed system has been verified by simulation and experimental results.
机译:本文提出了一种由单相电源馈电的无电解电容器可调速驱动(ASD)系统,其输入功率因数几乎为单位。抽头电感准Z源逆变器(TL-qZSI)用于代替直流母线电解电容器,该电容器可在电压骤降期间维持直流母线电压,并提高系统可靠性。如果没有电解电容器来平衡输入和输出功率,由于输入产生的二次谐波电流,较高的输入功率因数将导致直流总线电压的低频谐波失真更大。提出了一种采用直通零态的低频谐波最小化(LFHM)方法和采用调制指数的输入功率因数改善PWM(PFI-PWM)方法,该方法可以大大降低低频直流总线电压纹波,同时提高输入功率因数。详细分析了系统结构以及所提出的LFHM和PFI-PWM方法。仿真和实验结果验证了该系统的有效性。

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