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Stationary and Adaptive Color-Shift Reduction Methods Based on the Bilevel Driving Technique for Phosphor-Converted White LEDs

机译:基于双级驱动技术的荧光转换白光LED平稳和自适应减色方法

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摘要

The bilevel driving technique has realized a 2-D control of the luminosity and emitted color of white LEDs with duty cycle and forward current levels. Unfortunately, various combinations of these dimming control parameters can lead to significant changes in junction temperature, which further modify the luminosity and emitted color of LEDs. In this paper, the theoretical aspects of these complex interactions and the impact of bilevel drive on the color-shift properties of white LEDs are discussed in detail by using a mathematical color-shift model. Two color-shift reduction methods are proposed based on the insights obtained from this model. This study shows that a heat sink’s thermal resistance that minimizes the overall color shift over dimming can be uniquely determined from the knowledge of some measurable LED parameters, and gives rise to a global minimum color shift. If such a thermal resistance cannot be realized due to practical limitations, the second method that utilizes an adaptive change of forward current levels over dimming can be adopted. Based on their nature, these methods are classified as stationary and adaptive methods, respectively. Their validity is supported by experimental measurements on a commercial white LED.
机译:双电平驱动技术已经实现了具有占空比和正向电流水平的白色LED的亮度和发光颜色的二维控制。不幸的是,这些调光控制参数的各种组合会导致结温的显着变化,从而进一步改变LED的发光度和发光颜色。在本文中,使用数学色移模型详细讨论了这些复杂相互作用的理论方面以及双层驱动对白光LED色移特性的影响。根据从该模型获得的见解,提出了两种减色方法。这项研究表明,通过了解一些可测量的LED参数,可以唯一确定散热器的热阻,从而将调光时的总体色移降至最低。如果由于实际限制而无法实现这种热阻,则可以采用第二种方法,该方法利用调光时正向电流电平的自适应变化。根据其性质,这些方法分别分为固定方法和自适应方法。在商用白光LED上的实验测量结果证明了其有效性。

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