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A digital leading phase current reduction (LPCR) technique for CCM boost PFC in light load conditions

机译:在轻载条件下用于CCM升压PFC的数字超前相电流降低(LPCR)技术

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摘要

This paper proposes a leading phase current reduction (LPCR) technique in a continuous conduction mode (CCM) boost power factor correction (PFC) for light load power factor (PF) improvement. The proposed LPCR technique provides the corrected average inductor current reference and the modified duty ratio feed-forward (MDFF) technique which can cancel the effect of the phase lead currents resulting from the EMI filter and input capacitor. Moreover, the proposed LPCR also provides the optimal dead-zone from the corrected current reference and MDFF. Therefore, the proposed LPCR can improve the power quality and efficiency not only in high AC line voltage range but also in extreme light load conditions. The principle and analysis of the proposed LPCR are presented, and the performance and feasibility are verified by experimental results from 230 Vrms input and 750 W-400 V output laboratory prototype.
机译:本文提出了一种在连续传导模式(CCM)升压功率因数校正(PFC)中的超前相电流降低(LPCR)技术,以改善轻载功率因数(PF)。提出的LPCR技术提供了校正后的平均电感器电流参考和改进的占空比前馈(MDFF)技术,可以消除由EMI滤波器和输入电容器引起的相引线电流的影响。此外,提出的LPCR还可以从校正后的电流基准和MDFF提供最佳的死区。因此,提出的LPCR不仅可以在高AC线电压范围内,而且可以在极轻负载条件下提高电能质量和效率。介绍了所提出的LPCR的原理和分析,并通过230 Vrms输入和750 W-400 V输出实验室原型的实验结果验证了性能和可行性。

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