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Medial Meshes – A Compact and Accurate Representation of Medial Axis Transform

机译:中间网格–中间轴变换的紧凑而精确的表示

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The medial axis transform has long been known as an intrinsic shape representation supporting a variety of shape analysis and synthesis tasks. However, for a given shape, it is hard to obtain its faithful, concise and stable medial axis, which hinders the application of the medial axis. In this paper, we introduce the , a new discrete representation of the medial axis. A medial mesh is a 2D simplicial complex coupled with a radius function that provides a piecewise linear approximation to the medial axis. We further present an effective algorithm for computing a concise and stable medial mesh for a given shape. Our algorithm is quantitatively driven by a shape approximation error metric, and progressively simplifies an initial medial mesh by iteratively contracting edges until the approximation error reaches a predefined threshold. We further demonstrate the superior efficiency and accuracy of our method over existing methods for medial axis simplification.
机译:长期以来,中间轴变换已被称为支持各种形状分析和合成任务的固有形状表示。但是,对于给定的形状,很难获得其忠实,简洁和稳定的内侧轴,这阻碍了内侧轴的应用。在本文中,我们介绍了中轴的新离散表示。中间网格是2D简单复形体,结合了半径函数,该函数提供了对中间轴的分段线性近似。我们进一步提出了一种有效算法,用于为给定形状计算简洁而稳定的内侧网格。我们的算法由形状近似误差度量定量地驱动,并且通过迭代收缩边缘直到近似误差达到预定义的阈值来逐步简化初始中间网格。我们进一步证明了我们的方法比现有的内侧轴简化方法具有更高的效率和准确性。

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