首页> 外文期刊>EPE Journal: European Power Electronics and Drives >A Low-Cost High Power Factor Battery Charger based on Standard Peak-Current Mode Integrated Controllers
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A Low-Cost High Power Factor Battery Charger based on Standard Peak-Current Mode Integrated Controllers

机译:基于标准峰值电流模式集成控制器的低成本高功率因数电池充电器

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In recent years, several low-cost Power Factor Corrector (PFC) control techniques operating in Continuous Conduction Mode (CCM) have been proposed to simplify traditional control strategies based on a multiplier. This simplification makes sense in the case of relatively low-power, low-cost and wide input voltage range applications. These techniques revolve above the Boost converter as a first stage of a.c.-d.c. power supplies, because their application in other topologies is more expensive and complex. In some applications, however, a PFC can be used as a one-stage power supply. This paper presents a new low-cost control strategy suitable for the Flyback family of PFCs (e.g., Buck-Boost, Flyback, SEPIC, Cuk and ZETA). Control is carried out by a standard Peak Current-Mode Integrated Controller (PCMIC) for d.c. -d.c. converters. Neither an analog multiplier nor an input voltage sensor is needed to achieve quasi-sinusoidal line waveforms, which makes this method very attractive for low-cost applications. In fact, this method is the simplification of One Cycle Control (OCC), also called Linear Peak Current Mode Control (LPCMC), applied to the Flyback family of PFCs. In this case, the use of a simple exponential compensation ramp instead of linear ramp is the proposed solution for reducing the Total Harmonic Distortion (THD). Moreover, the line current is cycle-by-cycle controlled and therefore the input current feedback loop is extremely fast, thus allowing the use of this type of control with high frequency lines. Finally, an experimental prototype of a battery charger was developed as a high Power Factor (PF) power supply to verify the viability of the new control strategy.
机译:近年来,已经提出了几种以连续传导模式(CCM)运行的低成本功率因数校正器(PFC)控制技术,以简化基于乘法器的传统控制策略。在相对低功耗,低成本和宽输入电压范围的应用中,这种简化是有意义的。这些技术是在升压转换器上方进行交流的,这是交流到直流的第一阶段。电源,因为它们在其他拓扑中的应用更加昂贵和复杂。但是,在某些应用中,PFC可以用作一级电源。本文提出了一种适用于反激式PFC系列的新型低成本控制策略(例如Buck-Boost,Flyback,SEPIC,Cuk和ZETA)。通过标准的直流峰值电流模式集成控制器(PCMIC)进行控制。 -直流转换器。既不需要模拟乘法器也不需要输入电压传感器来获得准正弦线波形,这使得该方法对于低成本应用非常有吸引力。实际上,此方法是简化应用于PFC的反激系列的单周期控制(OCC),也称为线性峰值电流模式控制(LPCMC)。在这种情况下,使用简单的指数补偿斜坡代替线性斜坡是减少总谐波失真(THD)的建议解决方案。此外,线路电流是逐周期控制的,因此输入电流反馈环路非常快,因此允许在高频线路中使用这种类型的控制。最后,电池充电器的实验原型被开发为高功率因数(PF)电源,以验证新控制策略的可行性。

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