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Design of a Soft-Switching Asymmetrical Half-Bridge Converter as Second Stage of an LED Driver for Street Lighting Application

机译:一种软开关非对称半桥转换器的设计,作为路灯应用中LED驱动器的第二级

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摘要

High-brightness LEDs are considered remarkable lighting devices due to their high reliability, chromatic variety, and increasing efficiency. As a result, a high number of solutions for supplying LED strings are emerging. One-stage solutions are cost-effective, but their efficiency is low because they have to fulfill several purposes with only one converter: power factor correction (PFC), galvanic isolation (in some cases), and current regulation. Two-stage and three-stage solutions have higher efficiency because each stage is optimized for only one or two tasks and they are the preferred options when supplying several strings at the same time. In this paper, a two-stage solution is proposed. The first stage is the well-known PFC boost converter. The second stage, on which this paper is focused, is the asymmetrical half bridge (AHB). Its design has been optimized based on the needs and characteristics of LED-based street lighting applications. The proposed transformer design (with asymmetrical secondary windings) minimizes the conduction losses while the model of the converter during the dead times optimizes their duration, reducing switching losses in the MOSFETs and diodes. Experimental results obtained with a 40-W prototype show an efficiency as high as 94.5% for this second stage and validate the proposed design procedure and model.
机译:由于高亮度LED的高可靠性,色度变化和效率提高,它们被认为是出色的照明设备。结果,出现了用于提供LED串的大量解决方案。一级解决方案具有成本效益,但效率较低,因为它们仅需一个转换器即可满足多个目的:功率因数校正(PFC),电流隔离(在某些情况下)和电流调节。两阶段和三阶段解决方案具有更高的效率,因为每个阶段仅针对一项或两项任务进行了优化,并且是同时提供多个琴弦时的首选选项。本文提出了一种两阶段的解决方案。第一级是众所周知的PFC升压转换器。本文重点关注的第二阶段是不对称半桥(AHB)。根据基于LED的街道照明应用的需求和特性,对它的设计进行了优化。所提出的变压器设计(具有不对称的次级绕组)可最大程度地减小传导损耗,而在停滞时间内的转换器模型则可优化其持续时间,从而减少MOSFET和二极管的开关损耗。用40W原型获得的实验结果表明,第二阶段的效率高达94.5%,并验证了所提出的设计程序和模型。

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