用于高功率、高效率智能照明系统的反激式LED驱动器设计

IF 1.1 Q4 QUANTUM SCIENCE & TECHNOLOGY
V.I. Kornaga, D.V. Pekur, Yu.V. Kolomzarov, V.M. Sorokin, Yu.E. Nikolaenko
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引用次数: 0

摘要

本文考虑了大功率LED模块(驱动器)的高效电子控制系统的参数和特性,该系统基于一个标称功率接近200w的单级反激变换器。实验测试结果表明,在标称负载下,所研制的驱动器的最低效率可达88.2%,功率因数在0.97以上,总谐波电流畸变系数接近23.4%。在电源电压为240 V时,系统效率因数最大值为90.3%,功率因数大于0.99,总谐波电流畸变为3.6%。驱动器的电流谐波值不超过现行标准规定的最大允许值。所采用的驱动结构拓扑结构由于实现了组件库的统一,降低了最终产品的成本,提高了设计的可用性和可制造性。使用现代元件底座可以确保在电源的整个工作电压范围内(180…250 V),输出电流与设定电流的偏差不超过1%,从而允许在智能照明系统和具有组合电源的照明系统中使用开发的驱动器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of a LED driver with a flyback topology for intelligent lighting systems with high power and efficiency
Considered in this paper are the parameters and characteristics of the developed highly efficient electronic control systems for powerful LED modules (drivers), built on the basis of a single-stage flyback converter with a nominal power close to 200 W. The results of experimental tests show that, at the nominal load, the minimum efficiency of the developed driver reaches 88.2% with the power factor above 0.97 and the coefficient of total harmonic current distortion close to 23.4%. With the maximum value of the efficiency factor of the developed system 90.3% and the supply voltage 240 V, the power factor is higher than 0.99, and the total harmonic current distortion is 3.6%. The values of current harmonics of the driver do not exceed the maximum allowable values defined by the current standards. Used driver construction topology enabled to reduce the cost of the final product due to the unification of the component base, which increases the availability and manufacturability of the design. The use of a modern element base made it possible to ensure the deviation of the output current from the set one by no more than 1% over the whole range of the operating voltage of the supply (180…250 V), which allows using the developed driver in intelligent lighting systems and lighting systems with a combined power supply.
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来源期刊
CiteScore
1.80
自引率
22.20%
发文量
43
审稿时长
15 weeks
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