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Free-form optics for non-idealized light sources in 3D: a phase-space approach

机译:适用于3D非理想光源的自由形式光学器件:一种相空间方法

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Free-form optics have been proven to be a very powerful and efficient illumination strategy with applications ranging from automotive and architecture illumination to laser beam shaping. State of the art free-form optics design methods assume that the light has zero etendue, which is for example given if it is emitted from a point source or perfectly collimated. In some cases, this assumption is not valid and designing free-form optics with a zero-etendue method and using a non-zero etendue source will result in a blurring effect for sharp edges in the irradiance pattern. In previous work, we derived an integral formulation for the irradiance distribution on a target screen for a non-zero etendue source. Furthermore, we showed for a 2D-application that it is possible to combine this irradiance calculation method with a surface optimization routine to obtain free-form optics that also take into account a non-zero etendue. As a continuation, we extend this approach to three dimensions. To this end, we show how the integral formulation can be approximated numerically in three dimensions and we present an optimization method for the free-form optics. We demonstrate the performance of the algorithm by using two different test cases. For the second test case, we additionally present how the achieved irradiance distribution varies with the etendue of the source.
机译:自由形式的光学器件已被证明是一种非常强大和高效的照明策略,其应用范围从汽车和建筑照明到激光束整形。现有技术的自由形式光学设计方法假定光的集光率为零,例如,如果该光是从点光源发出或完全准直的,则可以给出该集光率。在某些情况下,这种假设是无效的,使用零展度方法和使用非零展度光源设计自由形式的光学器件将导致辐照度图中锐利边缘的模糊效果。在先前的工作中,我们为非零集光率光源在目标屏幕上得出了辐照度分布的积分公式。此外,对于2D应用,我们表明可以将这种辐照度计算方法与表面优化例程相结合,以获得自由形式的光学器件,该光学器件还考虑了非零光学扩展量。作为继续,我们将这种方法扩展到三个方面。为此,我们展示了如何在三个维度上对积分公式进行数值逼近,并为自由形式的光学器件提供了一种优化方法。我们通过使用两个不同的测试案例来演示算法的性能。对于第二个测试案例,我们另外介绍了达到的辐照度分布如何随光源的展度量而变化。

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