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Techniques for minimizing the input current distortion of current-controlled single-phase boost rectifiers

机译:使电流控制的单相升压整流器的输入电流失真最小化的技术

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Techniques for minimizing the input current distortion of current-controlled single-phase boost rectifiers are described. The switching patterns of several boost rectifiers are examined to identify the nature of their input current waveforms. This analysis is used to examine the low-frequency current distortion levels, and hence the power quality, associated with the rectifiers. A PWM (pulse width modulation) strategy that selectively switches between positive unipolar PWM and negative unipolar PWM, called phase-adjusted unipolar PWM, is shown to produce the lowest current distortion levels. A novel two-switch asymmetrical half-bridge rectifier is presented that draws an input current at a unity fundamental power factor and with the same low distortion as obtained with the four-switch H-bridge rectifier. The operation of the various rectifiers is examined with reference to theoretical predictions, circuit simulations, and experimental results. This analysis is used to compare the performances of the various rectifier switching patterns.
机译:描述了用于使电流控制的单相升压整流器的输入电流失真最小化的技术。检查了几个升压整流器的开关模式,以识别其输入电流波形的性质。该分析用于检查与整流器相关的低频电流失真水平,进而检查电源质量。一种PWM(脉冲宽度调制)策略可产生最低的电流失真水平,该策略可在正单极性PWM和负单极性PWM之间进行选择性切换,称为相位调整后的单极性PWM。提出了一种新颖的两开关非对称半桥整流器,该整流器以统一的基本功率因数吸收输入电流,并且具有与四开关H桥整流器相同的低失真。参考理论预测,电路仿真和实验结果检查了各种整流器的工作情况。该分析用于比较各种整流器开关模式的性能。

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