Self-adaptive zero current prediction (SAZCP) technique for auxiliary winding-free boost power factor correction controller

Chih-Wei Chang, Che-Hao Meng, Ke-Horng Chen
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Abstract

Power factor correction (PFC) can shape the input current of off-line power supplies to be in-phase with the input AC voltage to maximize the available real power from the AC source for high power factor (PF). Considering high PF and efficiency, the boundary conduction mode (BCM) control is more suitable for low-power applications such as the adapter and lighting. However, the zero current detector (ZCD) in conventional boost PFC suffers from high cost due to the need of auxiliary winding. The proposed self-adaptive zero current prediction (SAZCP) technique can accurately detect the zero current to implement an auxiliary winding-free boost PFC controller for low cost. Simulation results demonstrate that high PF of 0.998 and low THD of 3% can be achieved.
辅助无绕组升压功率因数校正控制器的自适应零电流预测技术
功率因数校正(PFC)可以使离线电源的输入电流与输入交流电压相一致,从而最大限度地提高高功率因数(PF)的交流电源的可用实际功率。考虑到高PF和高效率,边界传导模式(BCM)控制更适合适配器和照明等低功耗应用。然而,传统升压式PFC中的零电流检测器(ZCD)由于需要辅助绕组,成本较高。提出的自适应零电流预测技术可以准确地检测零电流,实现低成本的辅助无绕组升压PFC控制器。仿真结果表明,可以实现0.998的高PF和3%的低THD。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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