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Advanced color control for multicolor LED illumination systems with parametric optimization

机译:通过参数优化为多色LED照明系统提供高级色彩控制

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LED based luminaires are capable of providing innovative functionalities, such as color control and color temperature adaption. In fact, precise control of these two parameters has turned out to be very complex and challenging. This paper presents an advanced control technique for a very accurate and robust adjustment of both color and color temperature. Additionally, the proposed methodology enables system optimization of a LED based luminaire regarding various parameters, e.g. maximum color rendering index (CRI). The control signals for any PWM-switched LED driver can be tuned accordingly by the system controller. The algorithm is tested in simulations for three different luminaire realizations, namely RGB-W, RGB-A and RGB-CAW. The CIEDE2000 color difference formula is applied for computing the perceivable color difference ΔE by the human eye. The developed color control algorithm achieves a superior minimization of the absolute color distance to ΔE ≤ 0.21, which is not even perceivable by the human eye. This performance can be realized over a wide color temperature range from 3200K to 7500 K while luminous output is kept constant. Due to the applied optimization, a CRI of ≥ 90 can be maintained over the same color temperature range for all three scenarios. Simultaneously, the deviation of correlated color temperature ΔCCT is minimized to less than 50 K, which is a precision of more than 98 %. The novel algorithm considers strict hardware limitations, such as finite switching speed or limited computation resolution, to account for implementations on an ASIC or a μC.
机译:基于LED的照明设备能够提供创新的功能,例如色彩控制和色温适应性。实际上,对这两个参数的精确控制已变得非常复杂和具有挑战性。本文提出了一种先进的控制技术,可对色度和色温进行非常精确和鲁棒的调整。另外,所提出的方法使得能够实现关于各种参数(例如,LED)的基于LED的照明器的系统优化。最大显色指数(CRI)。任何PWM开关的LED驱动器的控制信号都可以通过系统控制器进行相应的调整。该算法在仿真中针对三种不同的照明实现(即RGB-W,RGB-A和RGB-CAW)进行了测试。 CIEDE2000色差公式用于计算人眼可感知的色差ΔE。所开发的色彩控制算法可将绝对色彩距离出色地最小化到ΔE≤0.21,这甚至是人眼无法感知的。可以在3200K至7500 K的宽色温范围内实现这一性能,同时保持发光输出恒定。由于应用了优化,因此对于所有三种情况,在相同的色温范围内都可以保持CRI≥90。同时,相关色温ΔCCT的偏差被最小化到小于50K,这是大于98%的精度。新颖的算法考虑了严格的硬件限制,例如有限的切换速度或有限的计算分辨率,以解决在ASIC或μC上的实现。

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