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Extraction of coherent and smooth feature lines from meshes with fine details

机译:从具有精细细节的网格中提取连贯且平滑的特征线

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Feature lines such as ridge-valley lines can be defined as the loci of points which maximize a certain geometric property (e.g. the principal curvature) along the corresponding "critical directions" (e.g. the principal direction of curvature). Such extrema over mesh edges are often determined by zero-crossings of directional derivatives. As a result, lines generated by existing algorithms suffer frequently from fragmentation (gaps on lines) and fluctuation (lack of smoothness). As such, we propose a novel method for tracing such lines. Points on feature lines, i.e. extrema over mesh edges, are detected and located by interpolating extrema in the vicinity of mesh vertices, which effectively reduces fragmentation and fluctuation of lines. Meanwhile, the majority of the existing algorithms for feature lines extraction employ high-order derivatives of the underlying surfaces for estimating both the geometric property and the critical direction. Estimation of differential invariants including curvature typically requires at least 2-ring neighborhoods of mesh vertices, making such quantities intrinsically incapable of capturing "local" features. By leveraging integral invariants, which can be defined over an appropriately small neighborhood, we are able to extract features of small scales when compared to that of mesh elements. In this paper, we demonstrate the effectiveness of our proposed method in generating coherent and smooth feature lines while providing more desirable details. (C) 2019 Elsevier Ltd. All rights reserved.
机译:诸如脊线-谷线的特征线可以被定义为沿着对应的“临界方向”(例如曲率的主要方向)最大化某个几何特性(例如主曲率)的点的位点。网格边缘上的这种极值通常由方向导数的零交叉确定。结果,由现有算法产生的线经常遭受碎裂(线间隙)和波动(缺乏平滑度)的困扰。因此,我们提出了一种追踪此类线的新颖方法。通过在网格顶点附近内插极值来检测和定位要素线上的点(即网格边缘上的极值),从而有效地减少了线的碎裂和波动。同时,大多数现有的特征线提取算法都使用底层表面的高阶导数来估计几何特性和临界方向。估计包括曲率的微分不变量通常需要至少2个环网顶点的环,这使得这些量本质上无法捕获“局部”特征。通过利用可以在适当的小邻域中定义的整数不变式,与网格元素相比,我们能够提取小比例尺的特征。在本文中,我们展示了我们提出的方法在生成连贯且平滑的特征线的同时提供更多所需细节的有效性。 (C)2019 Elsevier Ltd.保留所有权利。

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