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使用多个自由曲面进行高分辨率辐照度定制。

High resolution irradiance tailoring using multiple freeform surfaces.

作者信息

Bruneton Adrien, Bäuerle Axel, Wester Rolf, Stollenwerk Jochen, Loosen Peter

机构信息

Technology of Optical Systems, RWTH Aachen University, 52056 Aachen, Germany.

出版信息

Opt Express. 2013 May 6;21(9):10563-71. doi: 10.1364/OE.21.010563.

Abstract

More and more lighting applications require the design of dedicated optics to achieve a given radiant intensity or irradiance distribution. Freeform optics has the advantage of providing such a functionality with a compact design. It was previously demonstrated in [Bäuerle et al., Opt. Exp. 20, 14477-14485 (2012)] that the up-front computation of the light path through the optical system (ray mapping) provides a satisfactory approximation to the problem, and allows the design of multiple freeform surfaces in transmission or in reflection. This article presents one natural extension of this work by introducing an efficient optimization procedure based on the physics of the system. The procedure allows the design of multiple freeform surfaces and can render high resolution irradiance patterns, as demonstrated by several examples, in particular by a lens made of two freeform surfaces projecting a high resolution logo (530 × 160 pixels).

摘要

越来越多的照明应用需要设计专用光学器件,以实现给定的辐射强度或辐照度分布。自由曲面光学器件具有通过紧凑设计提供此类功能的优势。先前在[Bäuerle等人,《光学快报》20,14477 - 14485(2012年)]中已证明,通过光学系统的光路预先计算(光线映射)能为该问题提供令人满意的近似结果,并允许设计透射或反射中的多个自由曲面。本文通过引入基于系统物理原理的高效优化程序,展示了这项工作的一个自然扩展。该程序允许设计多个自由曲面,并能呈现高分辨率辐照度图案,如几个示例所示,特别是由两个自由曲面制成的透镜投射出高分辨率标志(宽530像素×高160像素)的示例。

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