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Layered 3D: Tomographic Image Synthesis for Attenuation-based Light Field and High Dynamic Range Displays

机译:分层3D:用于基于衰减的光场和高动态范围显示器的层析图像合成

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We develop tomographic techniques for image synthesis on displays composed of compact volumes of light-attenuating material. Such volumetric attenuators recreate a 4D light field or high-contrast 2D image when illuminated by a uniform backlight. Since arbitrary oblique views may be inconsistent with any single attenuator, iterative tomographic reconstruction minimizes the difference between the emitted and target light fields, subject to physical constraints on attenuation. As multi-layer generalizations of conventional parallax barriers, such displays are shown, both by theory and experiment, to exceed the performance of existing dual-layer architectures. For 3D display, spatial resolution, depth of field, and brightness are increased, compared to parallax barriers. For a plane at a fixed depth, our optimization also allows optimal construction of high dynamic range displays, confirming existing heuristics and providing the first extension to multiple, disjoint layers. We conclude by demonstrating the benefits and limitations of attenuation-based light field displays using an inexpensive fabrication method: separating multiple printed transparencies with acrylic sheets.
机译:我们开发层析成像技术,以在由紧凑体积的光衰减材料组成的显示器上进行图像合成。当由均匀的背光照明时,这种体积衰减器会重新创建4D光场或高对比度2D图像。由于任意斜视图都可能与任何单个衰减器不一致,因此,迭代层析X射线摄影术可将发射光场与目标光场之间的差异最小化,但要受到衰减的物理限制。作为常规视差栅栏的多层概括,无论从理论上还是实验上都显示出这种显示超出了现有双层体系结构的性能。对于3D显示,与视差栅栏相比,空间分辨率,景深和亮度都得到了提高。对于固定深度的飞机,我们的优化还可以优化构造高动态范围的显示器,从而确认现有的启发式方法,并首次扩展到多个不相交的层。我们通过使用廉价的制造方法展示基于衰减的光场显示器的优点和局限性来得出结论:使用压克力板分离多个印刷的透明胶片。

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