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A novel LED lens for rotationally symmetric uniform illumination

机译:一种用于旋转对称均匀照明的新型LED透镜

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Traditional LED (light emitting diode) packaging always adopts hemisphere lens, and can ensure high light output efficiency, but its radiation pattern yields Lambert distribution and is non-uniformity. To enable LED light sources be applied in uniform illumination system, a method to obtain freeform LED lens based on energy equipartition and tangent iteration is proposed. Firstly, according to the Lambertian distribution of LED light intensity and its rotationally symmetric peculiarity, the LED emission angle is divided into N parts in Two-dimensional coordinate system, and the energy contained in each part is equal; Secondly, the target plane is divided into N equal areas along its radii, and the discrete points are corresponding to the N parts of emission angle. So that if the energy in each divided solid angle is controlled to illuminate the equal divided area, the illumination of each corresponding micro-belt on the target plane will be uniform; Finally, to avoid the total reflection of large emission angle rays, the designed lens will refract the rays with 0∼450 emission angle and reflect the rays with 450∼900 emission angle. Choosing an initial point on the freeform generatrix, and using Snell equation and tangent iteration method, the coordinates of all points on the freeform generatrix are obtained, which could be rotated into the freeform surface of the lens. The simulation results using the designed LED lens show that for a rotationally symmetric target plane the illumination uniformity is near to 90% and the energy efficiency is higher than 95%.
机译:传统LED(发光二极管)包装始终采用半球镜头,可确保高光输出效率,但其辐射图案产生兰伯特分布并不均匀。为了使LED光源施加在均匀照明系统中,提出了一种基于能量ectipartition和切线迭代获得自由形式LED镜头的方法。首先,根据LED光强度的灯光分布及其旋转对称的特殊性,LED发射角分为二维坐标系中的N部分,并且每个部分中包含的能量是相等的;其次,目标平面沿其半径分成N等区域,并且离散点对应于发射角的N部分。因此,如果控制每个分开的固体角度的能量被控制以照亮等分割区域,则靶平面上的每个相应微带的照明将是均匀的;最后,为了避免大发射角射线的总反射,设计的镜头将折射0〜450发射角的光线,并反射具有450〜900的发射角度的光线。选择自由形式概括的初始点,并使用SNELL方程和切线迭代方法,获得自由形式成果上的所有点的坐标,可以将其旋转到镜头的自由框。使用设计的LED镜头的仿真结果表明,对于旋转对称的目标平面,照明均匀性近90%,能量效率高于95%。

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