基于红、绿、蓝led的白光光源:实现挑战和控制设计

S. Muthu, J. Gaines
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引用次数: 129

摘要

高功率发光二极管(LED)技术的改进,每个LED芯片100流明以上,使固态照明接近现实。结合红、绿、蓝(RGB) led可以提供一个紧凑的白色光源,具有独特的功能,如即时颜色变化。然而,RGB-LED光源的实现有许多实际问题,如传感器放置,LED驱动,控制设计以及温度和时间稳定性。这可能导致灯的操作,可能不满足空间,色彩维护和许多应用的感知要求。在本文中,我们以RGB-LED光引擎为例,强调实际问题并提出解决方案。讨论了光引擎的空间混合、传感器布置和控制系统设计,并给出了实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Red, green and blue LED-based white light source: implementation challenges and control design
The improvements in high power light emitting diode (LED) technology with 100+ lumens per LED chip bring solid-state lighting close to reality. Combining red, green and blue (RGB) LEDs can provide a compact white light source with unique features such as instant color variability. However, the implementation of an RGB-LED light source has numerous practical issues such as sensor placement, LED driving, control design and stability with temperature and time. This can result in lamp operation that may not meet the spatial, color maintenance and perception requirements of many applications. In this paper, we highlight the practical issues and present solutions using an RGB-LED light engine as an example. The spatial mixing, sensor placement, and control system design for the light engine are discussed and experimental results are provided.
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