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Nonlinear Dimming and Correlated Color Temperature Control of Bicolor White LED Systems

机译:双色白光LED系统的非线性调光和相关色温控制

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摘要

This paper proposes a nonlinear approach of controlling the luminous intensity and correlated color temperature (CCT) of white light-emitting diode (LED) systems with dual color temperatures. This LED system is made up of a warm color LED source (2700 K) and a cool color LED source (5000 K). The luminous intensity of each of these LED sources is individually controlled by pulsewidth modulation. The overall intensity of the LED system is due to the combined emitted flux of both LED sources. Its overall CCT is the mixed average CCT of both LED sources. This proposed method is based on the nonlinear empirical luminous and CCT models of the LEDs, which take into consideration the thermal effect of LEDs on its luminance and CCT properties. With reasonable approximation, the theoretical models are simplified into practical solutions, which are translatable into real-life applications. It is experimentally validated that the proposed approach is considerably more accurate than the existing linear approaches that do not consider color variations of LED sources. The idea is applicable to LED systems with multiple color temperatures and is not limited to white LEDs.
机译:本文提出了一种非线性方法来控制具有双色温的白色发光二极管(LED)系统的发光强度和相关色温(CCT)。该LED系统由暖色LED光源(2700 K)和冷色LED光源(5000 K)组成。这些LED光源中每个光源的发光强度均通过脉宽调制进行单独控制。 LED系统的整体强度归因于两个LED源的总发射通量。其总体CCT是两种LED光源的混合平均CCT。所提出的方法基于LED的非线性经验发光和CCT模型,该模型考虑了LED对其亮度和CCT特性的热效应。通过合理的近似,理论模型可以简化为实际解决方案,可以转化为实际应用。经过实验验证,所提出的方法比不考虑LED光源颜色变化的现有线性方法要精确得多。该想法适用于具有多种色温的LED系统,而不仅限于白色LED。

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