首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >New reversing freeform lens design method for LED uniform illumination with extended source and near field
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New reversing freeform lens design method for LED uniform illumination with extended source and near field

机译:延长源和近场LED均匀照明的新型逆转自由镜设计方法

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In light-emitting diode (LED) array illumination (e.g. LED backlighting), obtainment of high uniformity in the harsh condition of the large distance height ratio (DHR), extended source and near field is a key as well as challenging issue. In this study, we present a new reversing freeform lens design algorithm based on the illuminance distribution function (IDF) instead of the traditional light intensity distribution, which allows uniform LED illumination in the above mentioned harsh conditions. IDF of freeform lens can be obtained by the proposed mathematical method, considering the effects of large DHR, extended source and near field target at the same time. In order to prove the claims, a slim direct-lit LED backlighting with DHR equal to 4 is designed. In comparison with the traditional lenses, illuminance uniformity of LED backlighting with the new lens increases significantly from 0.45 to 0.84, and CV(RMSE) decreases dramatically from 0.24 to 0.03 in the harsh condition. Meanwhile, luminance uniformity of LED backlighting with the new lens is obtained as high as 0.92 at the condition of extended source and near field. This new method provides a practical and effective way to solve the problem of large DHR, extended source and near field for LED array illumination. (c) 2017 Elsevier B.V. All rights reserved.
机译:在发光二极管(LED)阵列照明(例如LED背光)中,在大距离高度比(DHR)的恶劣条件下获得高均匀性,扩展源和近场是一个关键和具有挑战性的问题。在这项研究中,我们介绍了一种基于照度分布函数(IDF)的新的逆转自由镜头设计算法,而不是传统的光强度分布,这允许在上述苛刻条件下均匀LED照明。通过所提出的数学方法可以获得自由形状镜片的IDF,考虑到大DHR,扩展源和近场目标的同时的影响。为了证明权利要求,设计了具有等于4的DHR的超薄直接光线LED背光。与传统镜头相比,具有新镜头的LED背光的照度均匀性从0.45增加到0.84,并且CV(RMSE)在恶劣条件下从0.24到0.03急剧下降。同时,在扩展源和近场的条件下,获得了具有新镜头的LED背光的亮度均匀性,高达0.92。这种新方法提供了解决LED阵列照明的大型DHR,扩展源和近场问题的实用有效方法。 (c)2017年Elsevier B.V.保留所有权利。

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