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Adaptive Patches for Mesh Denoising

机译:用于网状去噪的自适应贴片

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摘要

The generation of triangular meshes typically introduces undesired noise which comes from different sources. Mesh denoising is a geometry processing task to remove this kind of distortion. To preserve the geometric fidelity of the desired mesh, a mesh denoising algorithm must maintain the object details while removing artificial high-frequencies from the surface. In this work, we propose a two-step algorithm which uses adaptive patches and bilateral filtering to denoise the normal vector field, and then update vertex positions fitting the faces to the denoised normals. The computation of the adaptive patches is our main contribution. We formulate this computation as local quadratic optimization problems that can be controlled by a set of parameters to obtain the desired behavior. We compared our proposal with several algorithms proposed in the literature using synthetic and real data. Our algorithm yields better results in general and is based on a formal mathematical formulation.
机译:三角网格的产生通常介绍来自不同来源的不期望的噪声。网状去噪是一种几何处理任务,可以消除这种失真。为了保留所需网格的几何保真度,网状去噪算法必须在从表面移除人造高频时保持对象细节。在这项工作中,我们提出了一种两步算法,它使用自适应贴片和双边滤波来代替正常矢量场,然后更新将面孔装配到去噪的标准的顶点位置。适应性补丁的计算是我们的主要贡献。我们将该计算标准为局部二次优化问题,可以由一组参数控制以获得所需的行为。我们将我们的建议与使用合成和实际数据中的文献中提出的几种算法进行了比较。我们的算法通常产生更好的结果,并且基于正式的数学制定。

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