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Synthesis and rendering of bidirectional texture functions on arbitrary surfaces

机译:在任意表面上合成和渲染双向纹理函数

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The bidirectional texture function (BTF) is a 6D function that describes the appearance of a real-world surface as a function of lighting and viewing directions. The BTF can model the fine-scale shadows, occlusions, and specularities caused by surface mesostructures. We present algorithms for efficient synthesis of BTFs on arbitrary surfaces and for hardware-accelerated rendering. For both synthesis and rendering, a main challenge is handling the large amount of data in a BTF sample. To addresses this challenge, we approximate the BTF sample by a small number of 4D point appearance functions (PAFs) multiplied by 2D geometry maps. The geometry maps and PAFs lead to efficient synthesis and fast rendering of BTFs on arbitrary surfaces. For synthesis, a surface BTF can be generated by applying a texton-based synthesis algorithm to a small set of 2D geometry maps while leaving the companion 4D PAFs untouched. As for rendering, a surface BTF synthesized using geometry maps is well-suited for leveraging the programmable vertex and pixel shaders on the graphics hardware. We present a real-time BTF rendering algorithm that runs at the speed of about 30 frames/second on a mid-level PC with an ATI Radeon 8500 graphics card. We demonstrate the effectiveness of our synthesis and rendering algorithms using both real and synthetic BTF samples.
机译:双向纹理函数(BTF)是一种6D函数,它根据照明和查看方向来描述真实世界表面的外观。 BTF可以对由表面介观结构引起的精细阴影,遮挡和镜面反射建模。我们提出了用于在任意表面上高效合成BTF以及用于硬件加速渲染的算法。对于合成和渲染,主要挑战是处理BTF样本中的大量数据。为了解决这个挑战,我们用少量的4D点外观函数(PAF)乘以2D几何图来近似BTF样本。几何图形和PAF导致BTF在任意表面上的有效合成和快速渲染。对于合成,可以通过将基于纹理的合成算法应用于一小组2D几何图来生成表面BTF,同时不影响伴随的4D PAF。对于渲染,使用几何图谱合成的表面BTF非常适合利用图形硬件上的可编程顶点和像素着色器。我们提出了一种实时BTF渲染算法,该算法在带有ATI Radeon 8500显卡的中级PC上以大约30帧/秒的速度运行。我们展示了使用真实和合成BTF样本进行合成和渲染算法的有效性。

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