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Novel Digital-Controlled Transition Current-Mode Control and Duty Compensation Techniques for Interleaved Power Factor Corrector

机译:交错式功率因数校正器的新型数字控制过渡电流模式控制和占空比补偿技术

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摘要

A novel digital-controlled transition current-mode control technique for interleaved power factor corrector (PFC) is proposed in this paper. For the presented technique, the switching period to retain zero-current switching is predicted rather than sampling the current in real time. Moreover, the related turn-ON period is determined by the voltage controller. Therefore, neither zero-current detection nor high-frequency A/D converter for current sampling is required. Moreover, for interleaved topology with master–slave control, a new ON-time compensation technique is proposed to significantly improve the slave inductor-current distortion, and thereby, achieving current sharing control between phases. Experimental results derived from a DSP-based controller are presented for confirmation. The PFC is with 100 Vac/50 Hz input and 400 Vdc output. The power rating is 460 W. Experimental results show that the power factor is higher than 0.98, efficiency is greater than 96%, and the current sharing can be achieved by the proposed ON-time compensation technique. These results confirm the aforementioned claims very well.
机译:提出了一种新型的交错式功率因数校正器(PFC)的数控过渡电流模式控制技术。对于提出的技术,预测保持零电流开关的开关周期,而不是实时采样电流。此外,相关的导通时段由电压控制器确定。因此,既不需要零电流检测,也不需要用于电流采样的高频A / D转换器。此外,对于具有主从控制的交错拓扑,提出了一种新的导通时间补偿技术,以显着改善从属电感器电流失真,从而实现各相之间的均流控制。提出了基于DSP的控制器的实验结果以供确认。 PFC具有100 Vac / 50 Hz输入和400 Vdc输出。额定功率为460W。实验结果表明,功率因数高于0.98,效率高于96%,并且所提出的导通时间补偿技术可以实现均流。这些结果很好地证实了前述权利要求。

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