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AC voltage and current sensorless control of three-phase PWM rectifiers

机译:三相PWM整流器的交流电压和电流无传感器控制

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摘要

In this paper, a novel control scheme of three-phase PWM rectifiers eliminating both the AC input voltage and current sensors is proposed. The phase angle and the magnitude of the source voltage are estimated by controlling the deviation between the rectifier current and its model current to be zero. The input currents can be reconstructed from switching states of the PWM rectifier and the measured DC link currents. To eliminate the calculation time delay effect of the microprocessor, the currents ahead one sampling period are estimated by a state observer and then are used for feedback control. The proposed control scheme reduces the system cost and improves its reliability. The feasibility of the proposed AC sensorless technique for three-phase PWM rectifiers has been verified through experiments using a high performance DSP chip.
机译:本文提出了一种新颖的三相PWM整流器控制方案,该方案消除了交流输入电压和电流传感器。通过将整流器电流与其模型电流之间的偏差控制为零,可以估算出电源电压的相角和幅度。输入电流可以根据PWM整流器的开关状态和测得的直流母线电流来重构。为了消除微处理器的计算时间延迟效应,状态观察者会估算一个采样周期之前的电流,然后将其用于反馈控制。所提出的控制方案降低了系统成本并提高了其可靠性。通过使用高性能DSP芯片进行的实验已验证了所提出的用于三相PWM整流器的交流无传感器技术的可行性。

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