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Factored Occlusion: Single Spatial Light Modulator Occlusion-capable Optical See-through Augmented Reality Display

机译:因子闭塞:单个空间光调制器能够遮挡功能的光学透视,增强现实显示

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摘要

Occlusion is a powerful visual cue that is crucial for depth perception and realism in optical see-through augmented reality (OST-AR). However, existing OST-AR systems additively overlay physical and digital content with beam combiners - an approach that does not easily support mutual occlusion, resulting in virtual objects that appear semi-transparent and unrealistic. In this work, we propose a new type of occlusion-capable OST-AR system. Rather than additively combining the real and virtual worlds, we employ a single digital micromirror device (DMD) to merge the respective light paths in a multiplicative manner. This unique approach allows us to simultaneously block light incident from the physical scene on a pixel-by-pixel basis while also modulating the light emitted by a light-emitting diode (LED) to display digital content. Our technique builds on mixed binary/continuous factorization algorithms to optimize time-multiplexed binary DMD patterns and their corresponding LED colors to approximate a target augmented reality (AR) scene. In simulations and with a prototype benchtop display, we demonstrate hard-edge occlusions, plausible shadows, and also gaze-contingent optimization of this novel display mode, which only requires a single spatial light modulator.
机译:遮挡是一种强大的视觉提示,对于光学透视的深度(OST-AR)中的深度感知和现实主义至关重要。然而,现有的OST-AR系统用光束组合器覆盖物理和数字内容 - 一种不容易支持相互闭塞的方法,导致显示半透明和不现实的虚拟对象。在这项工作中,我们提出了一种新型的遮挡能力的OST-AR系统。我们采用单个数字微镜设备(DMD)而不是加剧地组合真实和虚拟世界,以以乘法方式合并各个光路。这种独特的方法允许我们同时在像素的基础上同时阻止从物理场景入射的光,同时还调制由发光二极管(LED)发射的光以显示数字内容。我们的技术在混合二元/连续分子化算法上构建,以优化时间复用二进制DMD模式及其相应的LED颜色,以近似目标增强现实(AR)场景。在模拟和使用原型台式展示中,我们展示了这种新型显示模式的硬边闭合,合理的阴影,以及凝视或目的优化,这仅需要单个空间光调制器。

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