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Single-Stage Buck-Derived LED Driver With Improved Efficiency and Power Factor Using Current Path Control Switches

机译:使用电流路径控制开关提高效率和功率因数的单级降压衍生LED驱动器

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摘要

This paper proposes a single-stage light-emitting diode (LED) driver based on an inverted buck topology, using current path control switches. The proposed circuit consists of a control circuit, a bridge diode, and an inverted buck converter with multiple switches connected to the LED segments in parallel. Whereas the typical buck LED driver operates with a fixed LED forward voltage, the proposed driver operates with a variable LED forward voltage, according to the input voltage level. Because of this capability to adjust the LED forward voltage, it can reduce the current ripple and the switching frequency with a small inductance value. In addition, it enables operation with LED lamps of a wide voltage range, while simultaneously achieving small dead-angles. The detailed operation principles are described, and the design considerations for the proposed driver are discussed. The proposed driver circuit and control operation are verified experimentally using a 7 W hardware prototype with four LED segments. The obtained experimental results show that under a 110 V input voltage, the proposed driver achieves a power factor of 0.94 with a small dead-angle and an efficiency of 94%.
机译:本文提出了一种使用电流路径控制开关的基于反向降压拓扑的单级发光二极管(LED)驱动器。所提出的电路包括一个控制电路,一个桥式二极管和一个反向降压转换器,该转换器具有多个并联连接到LED段的开关。典型的降压LED驱动器以固定的LED正向电压工作,而建议的驱动器根据输入电压电平以可变的LED正向电压工作。由于具有调节LED正向电压的能力,因此可以以较小的电感值减小电流纹波和开关频率。此外,它还可以使用宽电压范围的LED灯工作,同时实现较小的死角。描述了详细的操作原理,并讨论了所建议驱动程序的设计注意事项。拟议的驱动器电路和控制操作已通过7 W硬件原型和四个LED段进行了实验验证。获得的实验结果表明,在110 V输入电压下,所提出的驱动器实现了0.94的功率因数,具有较小的死角和94%的效率。

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