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用于多深度屏幕投影场景的激光显示系统。

Laser display system for multi-depth screen projection scenarios.

作者信息

La Torre J Pablo, Mayes Nathan, Riza Nabeel A

出版信息

Appl Opt. 2017 Nov 10;56(32):9023-9029. doi: 10.1364/AO.56.009023.

Abstract

Proposed is a laser projection display system that uses an electronically controlled variable focus lens (ECVFL) to achieve sharp and in-focus image projection over multi-distance three-dimensional (3D) conformal screens. The system also functions as an embedded distance sensor that enables 3D mapping of the multi-level screen platform before the desired laser scanned beam focused/defocused projected spot sizes are matched to the different localized screen distances on the 3D screen. Compared to conventional laser scanning and spatial light modulator (SLM) based projection systems, the proposed design offers in-focus non-distorted projection over a multi-distance screen zone with varying depths. An experimental projection system for a screen depth variation of 65 cm is demonstrated using a 633 nm laser beam, 3 KHz scan speed galvo-scanning mirrors, and a liquid-based ECVFL. As a basic demonstration, an in-house developed MATLAB based graphic user interface is deployed to work along with the laser projection display, enabling user inputs like text strings or predefined image projection. The user can specify projection screen distance, scanned laser linewidth, projected text font size, projected image dimensions, and laser scanning rate. Projected images are shown highlighting the 3D control capabilities of the display, including the production of a non-distorted image onto two-depths versus a distorted image via dominant prior-art projection methods.

摘要

本文提出了一种激光投影显示系统,该系统使用电控可变焦距透镜(ECVFL),以在多距离三维(3D)共形屏幕上实现清晰且对焦的图像投影。该系统还具备嵌入式距离传感器的功能,能够在将所需的激光扫描光束聚焦/散焦后的光斑尺寸与3D屏幕上不同的局部屏幕距离相匹配之前,对多级屏幕平台进行3D映射。与传统的基于激光扫描和空间光调制器(SLM)的投影系统相比,该设计能够在具有不同深度的多距离屏幕区域上提供对焦且无失真的投影。使用633nm激光束、3KHz扫描速度的振镜扫描镜和基于液体的ECVFL,展示了一个屏幕深度变化为65cm的实验性投影系统。作为一个基本演示,部署了一个内部开发的基于MATLAB的图形用户界面,使其与激光投影显示器协同工作,实现诸如文本字符串或预定义图像投影等用户输入。用户可以指定投影屏幕距离、扫描激光线宽、投影文本字体大小、投影图像尺寸和激光扫描速率。所展示的投影图像突出了显示器的3D控制能力,包括通过主要的现有技术投影方法在两个深度上生成无失真图像与失真图像的对比。

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