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Performance Comparison of PI and P Compensation in DSP-Based Average-Current-Controlled Three-Phase Six-Switch Boost PFC Rectifier

机译:基于DSP的平均电流控制三相六开关升压PFC整流器中PI和P补偿的性能比较

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摘要

In this paper, it is shown that in the three-phase six-switch boost power factor correction rectifier with average-current control with mismatched input-voltage and input-current sensing gains as well as offset errors in input-voltage and input-current sensing, the current controller with proportional (P) compensation exhibits lower total harmonic distortion (THD) and higher power factor compared with that of proportional and integral compensation. It is also shown that P compensation with input-voltage feedforward is effective in improving output-voltage transient response with respect to input-voltage changes only if duty-cycle feedforward is also implemented. Finally, it is shown that zero-sequence-signal injection, in addition to enabling the output-voltage regulation in a wider input-voltage range, also improves the THD of the input currents.
机译:本文表明,在具有平均电流控制的三相六开关升压功率因数校正整流器中,输入电压和输入电流感测增益不匹配,并且输入电压和输入电流的失调误差感测中,与比例和积分补偿相比,具有比例(P)补偿的电流控制器具有较低的总谐波失真(THD)和较高的功率因数。还表明,只有在也执行占空比前馈的情况下,具有输入电压前馈的P补偿才可以有效地改善相对于输入电压变化的输出电压瞬态响应。最后,表明零序信号注入除了能够在更宽的输入电压范围内实现输出电压调节之外,还可以改善输入电流的THD。

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