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Design and Implementation of Digital Controlled Boost PFC Converter Under Boundary Conduction Mode

机译:边界传导模式下数字控制升压PFC转换器的设计与实现

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The use of power factor correction (PFC) converters is widely discussed and considered for most off-line power supplies. For low power applications, boost PFC converters operated in discontinuous conduction mode (DCM) or boundary conduction mode (BCM) mode are usually employed. The main advantage of BCM mode is the reduction of reversal recovery loss of diode and simple control, especially at the high-line light-load condition. In this paper, a digital-controlled method for boost PFC operating under boundary conduction mode without input voltage sensing is proposed. The digital PI controller voltage is used to determine the constant on-time period and the comparator block inside the DSP controller is employed to detect the zero-crossing of inductor current for turning on the main switch. Therefore, the size and cost are reduced significantly. A 200W boost PFC prototype is implemented and tested to verify the feasibility of the proposed control scheme.
机译:功率因数校正(PFC)转换器的使用被广泛讨论并考虑用于大多数离线电源。对于低功耗应用,通常采用升压以不连续导通模式(DCM)或边界传导模式(BCM)模式操作的PFC转换器。 BCM模式的主要优点是减少二极管的逆转回收损失和简单的控制,尤其是在高线路载荷条件下。本文提出了一种用于在没有输入电压感测的边界传感的边界导电模式下升压PFC的数字控制方法。数字PI控制器电压用于确定DSP控制器内部的恒定导通时间段,并且采用DSP控制器内的比较器块来检测电感器电流的零交叉,用于接通主开关。因此,大小和成本显着降低。实现并测试了200W提升PFC原型,以验证所提出的控制方案的可行性。

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