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Capacitance Reduction With An Optimized Converter Connection Applied to LED Drivers

机译:通过将优化的转换器连接应用于LED驱动器来降低电容

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摘要

This paper presents a new control method and a detailed project methodology for the optimized connection method of two converters, aiming to reduce the redundant power processing, in order to supply high-power light-emitting diodes (LEDs) with reduced capacitance and high efficiency, directly from the ac line. This connection method allows dealing with two major issues related to the LED driver: capacitance reduction and efficiency increasing. The first converter provides power factor correction, whereas the second converter controls the current through the LED. The basic idea consists in making the second converter to process only the low-frequency ripple (LFR) of the first converter, thus smoothing the LED current. In this way, the LFR is managed by the second stage, so that the capacitance of the first stage can be significantly reduced. The proposed control method can achieve better results for the low-frequency compensation. In addition to that, a high power factor and a low harmonic content are obtained, fulfilling the IEC 61000-3-2 Class C requirements. A laboratory prototype with a rated power of 75 W and an input voltage of 220 /60 Hz was built in order to show the feasibility of the idea. The measured overall efficiency of the converter was 91%, and electrolytic capacitors were avoided.
机译:本文针对两个转换器的优化连接方法提出了一种新的控制方法和详细的项目方法,旨在减少冗余功率处理,从而为大功率发光二极管(LED)提供减小的电容和更高的效率,直接从交流线路。这种连接方法可以解决与LED驱动器有关的两个主要问题:电容减小和效率提高。第一个转换器提供功率因数校正,而第二个转换器控制通过LED的电流。基本思想在于使第二个转换器仅处理第一个转换器的低频纹波(LFR),从而使LED电流平滑。这样,LFR由第二级管理,从而可以显着减小第一级的电容。所提出的控制方法可以取得更好的低频补偿效果。除此之外,满足IEC 61000-3-2 C类要求,可以获得高功率因数和低谐波含量。为了证明这一想法的可行性,建造了一个额定功率为75 W,输入电压为220/60 Hz的实验室原型。测得的转换器总效率为91%,避免使用电解电容器。

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