使用基于深度的几何重建和依赖于视图的纹理映射的实时3D渲染

Chih-Fan Chen, M. Bolas, Evan A. Suma
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引用次数: 4

摘要

随着最近高保真头戴式显示器(hmd)的普及,人们对可以集成到虚拟现实环境中的逼真3D内容的需求越来越大。然而,创建逼真的模型不仅困难而且耗时。一种更简单的替代方法是扫描现实世界中的物体,然后在虚拟世界中呈现它们的数字化对应物。捕获对象可以通过使用广泛使用的消费级RGB-D相机执行3D扫描来实现。这个过程包括从使用结构光或飞行时间传感器生成的深度图像重建几何模型。通过融合扫描期间捕获的多个彩色图像的数据来确定色图。现有的方法是通过平均所有这些图像的颜色来计算每个顶点的颜色。以这种方式混合颜色会产生低保真度的模型,看起来很模糊。(图1右)。此外,这种方法还产生了在模型上烘烤的具有固定照明的纹理。这种限制在头部跟踪的虚拟现实中变得更加明显,因为照明(例如镜面反射)不会根据用户的视点适当改变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-time 3D rendering using depth-based geometry reconstruction and view-dependent texture mapping
With the recent proliferation of high-fidelity head-mounted displays (HMDs), there is increasing demand for realistic 3D content that can be integrated into virtual reality environments. However, creating photorealistic models is not only difficult but also time consuming. A simpler alternative involves scanning objects in the real world and rendering their digitized counterpart in the virtual world. Capturing objects can be achieved by performing a 3D scan using widely available consumer-grade RGB-D cameras. This process involves reconstructing the geometric model from depth images generated using a structured light or time-of-flight sensor. The colormap is determined by fusing data from multiple color images captured during the scan. Existing methods compute the color of each vertex by averaging the colors from all these images. Blending colors in this manner creates low-fidelity models that appear blurry. (Figure 1 right). Furthermore, this approach also yields textures with fixed lighting that is baked on the model. This limitation becomes more apparent when viewed in head-tracked virtual reality, as the illumination (e.g. specular reflections) does not change appropriately based on the user's viewpoint.
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