Elimination of electrolytic capacitor in LED power supplies by two-phase driving approach

C. Wong, Yuk-Ming Lai, K. H. Loo, Chi K. Tse
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引用次数: 4

Abstract

A two-phase driving approach for light-emitting-diode (LED) applications is proposed in this paper. In the approach, two rectangular AC sources are employed so that the output current ripple can be significantly reduced. It leads to the elimination of electrolytic capacitor from the driver circuit. The approach is realised by a dual asymmetrical half-bridge converter with LEDs as the load. Considering the mandatory lighting standard for an AC/DC LED driver, the half-bridges are preceded by a valley-fill circuit for meeting the input power factor (PF) and current harmonic distortion requirements. Unlike other existing interleaved LED drivers that can only obtain low current ripples in certain operating points, the proposed approach can maintain a constant output current at all times even under large duty cycle dynamics due to the use of a valley-fill circuit. To validate the feasibility of the proposed approach, a 13 W prototype is built and tested experimentally.
采用两相驱动方法消除LED电源中的电解电容
提出了一种用于发光二极管(LED)应用的两相驱动方法。在该方法中,采用两个矩形交流源,可以显著降低输出电流纹波。它导致从驱动电路中消除电解电容。该方法通过以led为负载的双非对称半桥变换器实现。考虑到AC/DC LED驱动器的强制性照明标准,在半桥之前采用谷填充电路,以满足输入功率因数(PF)和电流谐波失真要求。与其他现有的交错LED驱动器只能在某些工作点获得低电流纹波不同,由于使用山谷填充电路,即使在大占空比动态下,该方法也可以始终保持恒定的输出电流。为了验证该方法的可行性,构建了一个13w的原型机并进行了实验测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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