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Virtual reality 3D headset based on DMD light modulators

机译:基于DMD光调制器的虚拟现实3D耳机

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We present the design of an immersion-type 3D headset suitable for virtual reality applications based upon digital micro-mirror devices (DMD). Current methods for presenting information for virtual reality are focused on either polarization-based modulators such as liquid crystal on silicon (LCoS) devices, or miniature LCD or LED displays often using lenses to place the image at infinity. LCoS modulators are an area of active research and development, and reduce the amount of viewing light by 50% due to the use of polarization. Viewable LCD or LED screens may suffer low resolution, cause eye fatigue, and exhibit a "screen door" or pixelation effect due to the low pixel fill factor. Our approach leverages a mature technology based on silicon micro mirrors delivering 720p resolution displays in a small form-factor with high fill factor. Supporting chip sets allow rapid integration of these devices into wearable displays with high-definition resolution and low power consumption, and many of the design methods developed for DMD projector applications can be adapted to display use. Potential applications include night driving with natural depth perception, piloting of UAVs, fusion of multiple sensors for pilots, training, vision diagnostics and consumer gaming. Our design concept is described in which light from the DMD is imaged to infinity and the user's own eye lens forms a real image on the user's retina resulting in a virtual retinal display.
机译:我们介绍一种适合基于数字微镜设备(DMD)的虚拟现实应用的浸入式3D耳机的设计。当前为虚拟现实呈现信息的方法主要集中在基于偏振的调制器(例如硅上液晶(LCoS)设备),或者通常使用透镜将图像置于无限远的微型LCD或LED显示器。 LCoS调制器是一个活跃的研究和开发领域,由于使用了偏振技术,LCoS调制器将观看光量减少了50%。可见的LCD或LED屏幕可能分辨率低,导致眼睛疲劳,并由于像素填充系数低而表现出“屏幕门”或像素化效果。我们的方法利用了基于硅微镜的成熟技术,以小尺寸和高填充系数提供了720p分辨率的显示器。支持的芯片组可以将这些设备快速集成到具有高清分辨率和低功耗的可穿戴式显示器中,并且为DMD投影仪应用开发的许多设计方法都可以适应显示器的使用。潜在的应用包括具有自然深度感知的夜间驾驶,无人机的驾驶,用于飞行员的多个传感器的融合,训练,视觉诊断和消费者游戏。我们描述了我们的设计概念,其中将来自DMD的光成像到无穷远,并且用户自己的眼镜在用户的视网膜上形成真实的图像,从而形成虚拟的视网膜显示。

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