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通过结合光线追踪和时域有限差分法优化微图案薄膜来提高发光二极管的相关色温均匀性。

Improving LED CCT uniformity using micropatterned films optimized by combining ray tracing and FDTD methods.

作者信息

Ding Xinrui, Li Jiasheng, Chen Qiu, Tang Yong, Li Zongtao, Yu Binhai

出版信息

Opt Express. 2015 Feb 9;23(3):A180-91. doi: 10.1364/OE.23.00A180.

DOI:10.1364/OE.23.00A180
PMID:25836247
Abstract

Although the light-emitting diode (LED) has revolutionized lighting, the non-uniformity of its correlated color temperature (CCT) still remains a major concern. In this context, to improve the light distribution performance of remote phosphor LED lamps, we employ a micropatterned array (MPA) optical film fabricated using a low-cost molding process. The parameters of the MPA, including different installation configurations, positioning, and diameters, are optimized by combining the finite-difference time-domain and ray-tracing methods. Results show that the sample with the upward-facing convex-cone MPA film that has a diameter of half of that of the remote phosphor glass, and is tightly affixed to the inward surface of the remote phosphor glass renders a superior light distribution performance. When compared with the case in which no MPA film is used, the deviation of the CCT distribution decreases from 1033 K to 223 K, and the corresponding output power of the sample is an acceptable level of 85.6%. We perform experiments to verify our simulation results, and the two sets of results exhibit a close agreement. We believe that our approach can be used to optimize MPA films for various lighting applications.

摘要

尽管发光二极管(LED)彻底改变了照明领域,但其相关色温(CCT)的不均匀性仍然是一个主要问题。在此背景下,为了提高远程荧光粉LED灯的光分布性能,我们采用了一种通过低成本成型工艺制造的微图案阵列(MPA)光学薄膜。通过结合时域有限差分法和光线追踪法,对MPA的参数进行了优化,包括不同的安装配置、定位和直径。结果表明,具有向上凸锥MPA薄膜的样品,其直径为远程荧光粉玻璃直径的一半,并紧密固定在远程荧光粉玻璃的内表面,具有优异的光分布性能。与未使用MPA薄膜的情况相比,CCT分布的偏差从1033 K降至223 K,样品的相应输出功率为可接受的85.6%。我们进行了实验以验证模拟结果,两组结果显示出密切的一致性。我们相信我们的方法可用于优化适用于各种照明应用的MPA薄膜。

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