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LED projection architectures for stereoscopic and multiview 3D displays

机译:用于立体和多视图3D显示的LED投影架构

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LED-based projection systems have several interesting features: extended color-gamut, long lifetime, robustness and a fast turn-on time. However, the possibility to develop compact projectors remains the most important driving force to investigate LED projection. This is related to the limited light output of LEI) projectors that is a consequence of the relative low luminance of LEDs, compared to high intensity discharge lamps. We have investigated several LED projection architectures for the development of new 3D visualization displays. Polarization-based stereoscopic projection displays are often implemented using two identical projectors with passive polarizers at the output of their projection lens. We have designed and built a prototype of a stereoscopic projection system that incorporates the functionality of both projectors. The system uses high-resolution liquidcrystal-on-silicon light valves and an illumination system with LEDs. The possibility to add an extra LED illumination channel was also investigated for this optical configuration. Multiview projection displays allow the visualization of 3D images for multiple viewers without the need to wear special eyeglasses. Systems with large number of viewing zones have already been demonstrated. Such systems often use multiple projection engines. We have investigated a projection architecture that uses only one digital micrornirror device arid a LED-based illumination system to create multiple viewing zones. The system is based on the time-sequential modulation of the different images for each viewing zone and a special projection screen with micro-optical features. We analyzed the limitations of a LED-based illumination for the investigated stereoscopic and multiview projection systems and discuss the potential of a laser-based illumination.
机译:基于LED的投影系统具有几个有趣的功能:扩展色域,长寿命,鲁棒性和快速接线时间。然而,开发紧凑型投影仪的可能性仍然是调查LED投影的最重要的驱动力。这与LEI的有限光输出有关,其投影仪是LED的相对低亮度的结果,与高强度放电灯相比。我们研究了用于开发新的3D可视化显示的LED投影架构。基于偏振的立体投影显示器通常使用两个相同的投影仪在其投影透镜的输出处具有被动偏振器来实现。我们已经设计并构建了一个立体投影系统的原型,它包含两个投影仪的功能。该系统采用高分辨率的液晶硅灯阀和带LED的照明系统。还研究了添加额外的LED照明通道的可能性,用于该光学配置。多视图投影显示允许为多个观看者进行3D图像的可视化,而无需佩戴特殊眼镜。已经证明了具有大量观看区的系统。这种系统通常使用多个投影发动机。我们已经调查了一个投影架构,该投影架构仅使用一个数字微型镜器设备干燥基于LED的照明系统来创建多个观看区域。该系统基于每个观看区域的不同图像的时间顺序调制和具有微光学特征的特殊投影屏幕。我们分析了研究的立体和多视图投影系统的基于LED的照明的局限性,并讨论了基于激光的照明的潜力。

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