双集成降压升压变换器与LED灯的双集成降压拓扑

Sruthi Damodaran
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摘要

本文对双集成降压升压和双集成降压变换器两种不同的LED驱动方式进行了比较研究。它提出了一种适用于Led照明应用的单级、单开关、无变压器ac/dc变换器。由于近年来LED技术的快速发展,高亮度发光二极管(HB LED)在包括路灯在内的普通照明领域可以被认真考虑取代传统的卤素灯、白炽灯和荧光灯。在许多离线应用中,保持高功率因数和低谐波是最重要的。单级功率因数预调节技术主要适用于需要功率因数调节的成本敏感型应用,因为增加额外的功率因数校正控制器必然会增加成本。本文介绍了一种高功率因数、长寿命集成转换器,能够从交流电源供电LED灯。该拓扑通过提供必要的高输入功率因数和低总谐波失真(THD),集成了降压升压型功率因数校正(PFC)单元和降压升压dc/dc转换器。隔离变压器增加了反馈和控制实现的复杂性。所建议的拓扑是非隔离的,因此在实现上要简单得多。该变换器的主要优点是该电路只使用一个可控开关。该转换器用于在路灯应用中提供功率因数校正。双集成降压变换器在固态照明领域得到了应用。Buck变换器广泛用于无隔离要求的降压dc-dc转换。buck变换器的窄占空比限制了它在高降压应用中的应用。双集成降压变换器克服了其局限性。该转换器还提供高功率因数和输出电流调节。一种基于降压功率因数校正器(PFC)和抽头降压dc/dc变换器集成的双集成降压变换器,用于LED照明的离线电源,具有高降压能力和良好的输出电流调节能力。由于可靠性高,结构简单,元件数量少,因此所提出的拓扑结构非常适合中功率固态照明应用。通过对两种集成电路的比较分析,发现双降压升压变换器具有更高的功率因数和更低的THD。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Double Integrated-Buck Boost Converter versus Double Integrated-Buck Topology for LED Lamps
In this paper a comparative study between two different approaches for LED driving based on the double integrated buck boost and a double integrated Buck converter. It presents a single-stage, single-switch, transformer less ac/dc converter suitable for Led lighting applications. High Brightness Light Emitting Diodes (HB LEDs) can be seriously considered for replacing conventional halogen, incandescent and fluorescent lamps in general illumination including streetlights due to the rapid development in LED technology in recent years. In many offline applications, maintaining a high-power factor and low harmonics are of primary importance. Single stage power factor pre-regulation technology is mainly preferred in cost sensitive applications where power factor regulation is necessary, as adding additional power factor correction controller will surely increase the cost. Here a high-power-factor, long life integrated converter able to supply LED lamps from ac mains is presented. This topology integrates a buck-boost type power-factor correction (PFC) cell with a buck–boost dc/dc converter there by providing the necessary high input power factor and low Total Harmonic Distortion (THD). An isolation transformer increases complexities in the implementation of feedback and control. The proposed topology is non-isolated and hence much simpler in implementation. The main advantage of this converter is that this circuit uses only one controllable switch. The converter is used to provide power factor correction in streetlight application. A Double integrated buck converter finds application in fields of solid-state lighting. Buck Converter is widely used for step down dc-dc conversion when there is no isolation requirement. The narrow duty cycle of the buck converter limits its application for high step-down applications. The double integrated buck converter overcomes its limitation. This converter also provides high power factor and output current regulation. A Double integrated buck converter uses for the offline power supply for LED lighting based on the integration of a buck power factor corrector (PFC) and the tapped buck dc/dc converter having high step-down capability and good output current regulation. Due to the high reliability, the simple structure, and the low component count, the proposed topology effectively results to be very suitable for medium power solid-state lighting applications. From Comparative analysis of two circuits integrated double buck boost converter is found to be more efficient with high power factor and low THD.
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