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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Continuous freeform lens design and optimization based on proportional source-target mapping for prescribed illumination
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Continuous freeform lens design and optimization based on proportional source-target mapping for prescribed illumination

机译:基于比例源 - 目标映射的连续自由形式镜头设计与优化规定照明

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摘要

A general and simple method for constructing a proportional source-target energy mapping in order to design a continuous freeform lens for an extended LED light source is proposed. This mapping has the characteristic that we can directly obtain the relationship between the angles of the emitted and incident rays in both the longitudinal and latitudinal directions. By applying this angular function in turn to the normal vector, the lighting situation on the target plane can be quickly determined. Simulation results motivate the proposal of a feedback optimization algorithm to compensate for the deterioration near the diagonal on the target surface caused by surface construction errors and the finite extent of a real source. Based on energy conservation theory and the edge-ray principle, the optimization algorithm is divided into three steps. Finally, the illumination effect on the irradiated surface is consistent with our expectations for an extended LED light source with dimensions of 4 mm x 4 mm. Simulation results show that the energy efficiency n of the freeform lens on the target surface is approximately 0.85 and that the uniformity exceeds 90%. We subsequently analyze the error tolerance of the designed freeform lens from two perspectives: translation and rotation. The minimum translational and rotational error tolerances are 0.3 mm 0.3 mm and 4 degrees, respectively, and the rotational error tolerance around the z-axis are greater than those around the x- and y-axes.
机译:提出了一种用于构造比例源极点能量映射的一般和简单方法,以便为扩展LED光源设计连续的自由形状镜头。该映射具有特征,我们可以直接获得纵向和纬度方向上的发射和入射光的角度之间的关系。通过将该角度函数沿常规向量应用,可以快速确定目标平面上的照明情况。仿真结果激励了反馈优化算法的提议,以补偿由表面构建误差引起的目标表面上的对角线附近的劣化以及真实源的有限范围。基于节能理论和边缘射线原理,优化算法分为三个步骤。最后,照射表面上的照明效果与我们对延伸的LED光源的预期一致,其尺寸为4mm×4mm。仿真结果表明,目标表面上的自由晶状体的能量效率约为0.85,均匀性超过90%。我们随后从两个视角分析了设计的自由形状镜头的误差容限:翻译和旋转。最小平移和旋转误差容差分别为0.3mm 0.3mm,4度,z轴周围的旋转误差容限大于x和y轴周围的旋转误差容限。

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