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Principal curvature ridges and geometrically salient regions of parametric B-spline surfaces

机译:参数B样条曲面的主曲率脊和几何显着区域

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Ridges are characteristic curves of a surface that mark salient intrinsic features of its shape and are therefore valuable for shape matching, surface quality control, visualization and various other applications. Ridges are loci of points on a surface where one of the principal curvatures attain a critical value in its respective principal direction. We present a new algorithm for accurately extracting ridges on B-spline surfaces and define a new type of salient region corresponding to major ridges that characterize geometrically significant regions on surfaces. Ridges exhibit complex behavior near umbilics on a surface, and may also pass through certain turning points causing added complexity for ridge computation. We present a new numerical tracing algorithm for extracting ridges that also accurately captures ridge behavior at umbilics and ridge turning points. The algorithm traverses ridge segments by detecting ridge points while advancing and sliding in principal directions on a surface in a novel manner, thereby computing connected curves of ridge points. The output of the algorithm is a set of curve segments, some or all of which may be selected for other applications such as those mentioned above. The results of our technique are validated by comparison with results from previous research and with a brute-force domain sampling technique.
机译:脊是表面的特征曲线,标记了其形状的显着内在特征,因此对于形状匹配,表面质量控制,可视化和各种其他应用非常有用。脊是主曲率之一在其各自的主方向上达到临界值的表面上的点的位点。我们提出了一种精确提取B样条曲面上的脊的新算法,并定义了一种与主要脊相对应的新型显着区域,这些脊表征了表面上的几何显着区域。脊在曲面上的脐带附近表现出复杂的行为,并且还可能会穿过某些转折点,从而导致脊计算的复杂性增加。我们提出了一种新的数值跟踪算法,用于提取山脊,该算法还可以准确地捕获脐带和山脊拐点处的山脊行为。该算法通过以新颖的方式在表面上沿主方向前进和滑动的同时检测脊点来遍历脊段,从而计算出脊点的连接曲线。该算法的输出是一组曲线段,可以为其他应用(例如上述应用)选择其中的一些或全部。通过与先前研究的结果以及蛮力域采样技术进行比较,验证了我们技术的结果。

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