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A Practical Method to Design Reflector-Based Light-Emitting Diode Luminaire for General Lighting

机译:一种设计基于反射器的发光二极管灯具的实用方法,用于一般照明

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摘要

A reflector-based light-emitting diode (LED) luminaire structure that can achieve a large cut-off angle for general lighting is presented in this work. The proposed lighting unit mainly consists of a spherical reflector and a primary packaging lens that contains an aspheric surface and a spherical surface. The light rays emitted from the LED light source are well controlled by the spherical reflector and the aspheric surface of the lens for the purpose of obtaining a uniform illumination on the target surface. Both the ideal Lambertian LED and non-Lambertian LED light sources were employed to validate the proposed structure and the performance of the designed lighting units was analyzed by optical simulation. The results show that the light utilization efficiencies and the estimated uniformities are 92.96% and 91.11% for ideal Lambertian LED-based lighting unit and 93.31% and 91.64% for non-Lambertian LED-based lighting unit, respectively. Further analysis shows that the tolerances of horizontal, vertical, and rotational deviation of the both lighting units were about 2.0 mm, 1.0 mm, and 1.0°, respectively.
机译:在这项工作中,提出了一种基于反射器的发光二极管(LED)照明器结构,其可以实现用于一般照明的大截止角度。所提出的照明单元主要由球形反射器和包含非球面和球形表面的主包装透镜组成。由LED光源发射的光线由球形反射器和透镜的非球面控制,以便获得目标表面上的均匀照明。理想的兰伯语LED和非灯泡LED光源都采用了验证所提出的结构,并通过光学模拟分析设计的照明单元的性能。结果表明,光线利用效率和估计的均匀性为基于Lambertian LED的理想LED的照明单元和基于非兰伯语LED的照明单元的93.31%和91.64%的92.96%和91.11%。进一步的分析表明,两个照明单元的水平,垂直和旋转偏差的公差分别为约2.0mm,1.0mm和1.0°。

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