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微型投影系统光路设计
引用本文:钱立勇,朱向冰,崔海田,王元航.微型投影系统光路设计[J].激光技术,2018,42(3):385-389.
作者姓名:钱立勇  朱向冰  崔海田  王元航
作者单位:1.安徽师范大学 光电技术研究中心, 芜湖 241000
摘    要:为了改善传统的数字光处理投影系统(DLP)体积较大、结构复杂、成本较高、对光源的利用效率较低的问题,采用一种基于单颗三色发光二极管作为照明光源,单颗透镜形成平行光的新型DLP投影光路结构的方法,对传统光路进行了改进与优化。无需传统光路中的色轮,透镜直接实现了传统投影光路中聚光和匀光的复杂结构,并利用TRACEPRO软件进行建模,通过光线追迹对该投影光路进行了光学分析。结果表明,整个光学系统的体积控制在76.8mm×32.2mm×25mm,光能利用率达到了60.1%,光斑均匀性达到了96.6%,屏幕表面的光通量为21.7lm。该研究减小了投影光路体积,简化了光学结构,提高了光能利用率。

关 键 词:光学设计    投影仪    发光二极管    透镜
收稿时间:2017-05-11

Design of optical path for miniature projection systems
Abstract:In order to improve the problems of traditional digital light processing (DLP) projection system, such as, large volume, complex structure, high cost, and low utilization efficiency of light source, using single three-color light emitting diode as light source and using a novel DLP projection optical structure of forming parallel light by a single lens, the traditional optical path was improved and optimized. Without colorwheel in the traditional optical path, the complex structures of light gathering and light distribution in the traditional projection light path were realized by lens directly.After using TRACEPRO software to model, the projection light path was analyzed by ray tracing. The results show that, the volume of whole optical system is controlled at 76.8mm×32.2mm×25mm, utilization rate of light energy reaches 60.1%, spot uniformity reaches 96.6%, and luminous flux on screen surface is 21.7lm. The research reduces the volume of projection light path, simplifies the optical structure and improves the utilization ratio of light energy.
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