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A Novel PCCM Boost PFC Converter With Fast Dynamic Response

机译:具有快速动态响应的新型PCCM Boost PFC转换器

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A novel pseudo-continuous conduction mode (PCCM) boost power-factor-correction (PFC) converter and its corresponding control strategy are proposed in this paper. Connecting a power switch in parallel with the inductor makes the boost converter operate in PCCM, which provides an additional degree of control freedom to realize PFC control. Therefore, a simple and fast voltage control loop of the PCCM boost PFC converter can be designed to realize output-voltage regulation. The additional degree of control freedom introduced by inductor current freewheeling operation of the PCCM boost PFC converter has been exploited through the dead-zone control technique, which can be dynamically adjusted in accordance with the output-voltage ripple. Compared with continuous conduction mode (CCM) boost PFC converter, the controller of the proposed PCCM boost PFC converter is much simpler. Moreover, the PCCM boost PFC converter benefits with reduced inductor-current ripple and improved power factor compared with boost PFC converter operating in discontinuous conduction mode (DCM). Analysis, simulation, and a 400-W prototype of the PCCM boost PFC converter have been presented and compared with those of boost PFC converters operating in conventional CCM and DCM. The results show that the dynamic response of the PCCM boost PFC converter is significantly faster than the existing boost PFC converter.
机译:提出了一种新型的伪连续导通模式(PCCM)升压功率因数校正(PFC)转换器及其相应的控制策略。将电源开关与电感并联连接,可使升压转换器在PCCM中运行,从而为实现PFC控制提供了额外的控制自由度。因此,可以设计PCCM升压PFC转换器的简单快速电压控制环路来实现输出电压调节。通过死区控制技术,可以利用PCCM升压PFC转换器的电感电流续流操作引入的额外控制自由度,该死区控制技术可以根据输出电压纹波进行动态调整。与连续传导模式(CCM)升压PFC转换器相比,所提出的PCCM升压PFC转换器的控制器要简单得多。此外,与以不连续导通模式(DCM)工作的升压PFC转换器相比,PCCM升压PFC转换器具有减少电感器电流纹波和改善功率因数的优势。提出了PCCM升压PFC转换器的分析,仿真和400 W原型,并将其与在常规CCM和DCM中运行的升压PFC转换器进行了比较。结果表明,PCCM升压PFC转换器的动态响应明显快于现有的升压PFC转换器。

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