首页> 外文会议>2010 IEEE Industry Applications Society Annual Meeting >Single-Stage Power-Factor-Correction Circuit with Flyback Converter to Drive LEDs for Lighting Applications
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Single-Stage Power-Factor-Correction Circuit with Flyback Converter to Drive LEDs for Lighting Applications

机译:具有反激转换器的单级功率因数校正电路,可驱动照明应用的LED

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White light emitting diode (LED) with high brightness has attracted a lot of attention from both industry and academia for its high efficiency, ease to drive, environmental friendliness, and long lifespan. They become possible applications to replace the incandescent bulbs and fluorescent lamps in residential, industrial and commercial lighting. The realization of this new lighting source requires both tight LED voltage regulation and high power factor as well. This paper proposed a single-stage flyback converter for the LED lighting applications and input power factor correction. A type-II compensator has been inserted in the voltage loop providing sufficient bandwidth and stable phase margin. The flyback converter is controlled with voltage mode pulse width modulation (PWM) and run in discontinuous conduction mode (DCM) so that the inductor current follows the rectified input voltage, resulting in high power factor. A prototype topology of closed-loop, single-stage flyback converter for LED driver circuit designed for an 18W LED lighting source is constructed and tested to verify the theoretical predictions. The measured performance of the LED lighting fixture can achieve a high power factor greater than 0.998 and a low total harmonic distortion less than 5.0%. Experimental results show the functionality of the overall system and prove it to be an effective solution for the new lighting applications.
机译:高亮度的白光发光二极管(LED)的高效率,易于驱动,环保和长寿命的特性引起了业界和学术界的广泛关注。它们成为替代住宅,工业和商业照明中的白炽灯泡和荧光灯的可能应用。要实现这种新光源,还需要严格的LED电压调节和高功率因数。本文提出了一种用于LED照明应用和输入功率因数校正的单级反激式转换器。 II型补偿器已插入电压环路中,以提供足够的带宽和稳定的相位裕度。反激转换器通过电压模式脉冲宽度调制(PWM)进行控制,并以不连续导通模式(DCM)运行,因此电感器电流遵循整流后的输入电压,从而导致高功率因数。构建并测试了用于18W LED光源的LED驱动器电路的闭环,单级反激转换器的原型拓扑,并进行了测试,以验证理论预测。 LED照明灯具的测量性能可以实现大于0.998的高功率因数和小于5.0%的低总谐波失真。实验结果表明了整个系统的功能,并证明它是新照明应用的有效解决方案。

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