静电谐波参数化

ACM Trans. Graph. Pub Date : 2013-09-01 DOI:10.1145/2503177
He Wang, K. Sidorov, Peter Sandilands, T. Komura
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引用次数: 48

摘要

在本文中,我们介绍了一种应用静电学思想来参数化物体周围开放空间的方法。通过将物体模拟成带电导体,我们可以定义一个以物体为中心的坐标系统,我们称之为电坐标。它以类似于极坐标的方式参数化参考对象的外部空间。我们还引入了一种量化物体被表面包裹的程度的度量。这个度量可以计算为由于带电导体周围的电场而通过包裹表面的电通量。静电参数包括电坐标和通量,在计算机图形学中有几个应用,包括:纹理、变形、网格划分、相对于目标对象的路径规划、网格参数化、设计可变形对象和计算覆盖。我们的方法适用于任意几何和拓扑的对象,因此适用于各种场景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Harmonic parameterization by electrostatics
In this article, we introduce a method to apply ideas from electrostatics to parameterize the open space around an object. By simulating the object as a virtually charged conductor, we can define an object-centric coordinate system which we call Electric Coordinates. It parameterizes the outer space of a reference object in a way analogous to polar coordinates. We also introduce a measure that quantifies the extent to which an object is wrapped by a surface. This measure can be computed as the electric flux through the wrapping surface due to the electric field around the charged conductor. The electrostatic parameters, which comprise the Electric Coordinates and flux, have several applications in computer graphics, including: texturing, morphing, meshing, path planning relative to a target object, mesh parameterization, designing deformable objects, and computing coverage. Our method works for objects of arbitrary geometry and topology, and thus is applicable in a wide variety of scenarios.
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