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Investigation of a slope-point-based method for the design of aspheric surfaces in a catadioptric collimating optical system for a light-emitting diode source

机译:基于斜点的发光二极管源折反射准直光学系统中非球面设计方法的研究

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摘要

The aim of this paper is to develop a straightforward rigorous and flexible computational method to determine the coordinate points on an aspheric surface. The computational method chosen is based on the basic slope-point form of a straight-line equation [slope-point method (SPM)]. The practical instrumental example chosen to illustrate this method is a rotationally symmetric catadioptric collimator for a light-emitting diode (LED) source. This optical system has both a refractive and a totally internally reflective aspheric surface. It is a particularly illuminating example because it requires careful computational attention to the smooth transition between the refracting inner zones and the reflective outer zones of the aperture. The chosen SPM computational method deals satisfactorily with the transition points at the junction between the refractive and total internal reflecting (TIR) zones of the collimator. As part of this study, the effect of the position of the start point of the SPM surface evolution for the TIR zones of the collimator emerges as being particularly important, and the details of this are discussed. Finally, an extension of the basic SPM-based method is used to generalize the development of the catadioptric collimator surfaces to illustrate this general algorithm for aspheric surface design for an extended LED light source.
机译:本文的目的是开发一种简单,精确,灵活的计算方法来确定非球面的坐标点。选择的计算方法基于直线方程的基本斜率点形式[斜率法(SPM)]。选择用来说明该方法的实际仪器示例是用于发光二极管(LED)源的旋转对称反射折射准直仪。该光学系统既具有折射表面又具有全内反射非球面。这是一个特别具有启发性的示例,因为它需要仔细地注意孔的折射内部区域和反射外部区域之间的平滑过渡。选择的SPM计算方法可以令人满意地处理准直仪的折射区和全内反射(TIR)区之间的交界处的过渡点。作为这项研究的一部分,对于准直仪的TIR区域而言,SPM表面演变起点位置的影响显得尤为重要,并将对此进行详细讨论。最后,基于SPM的基本方法的扩展用于概括折反射准直仪表面的发展,以说明用于扩展LED光源非球面设计的通用算法。

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  • 来源
    《Applied optics》 |2014年第29期|共11页
  • 作者

    Rung-Sheng Chen;

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