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首页> 外文期刊>IEEE transactions on visualization and computer graphics >Interactive Tensor Field Design and Visualization on Surfaces
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Interactive Tensor Field Design and Visualization on Surfaces

机译:曲面上的交互式张量场设计和可视化

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Designing tensor fields in the plane and on surfaces is a necessary task in many graphics applications, such as painterly rendering, pen-and-ink sketching of smooth surfaces, and anisotropic remeshing. In this article, we present an interactive design system that allows a user to create a wide variety of symmetric tensor fields over 3D surfaces either from scratch or by modifying a meaningful input tensor field such as the curvature tensor. Our system converts each user specification into a basis tensor field and combines them with the input field to make an initial tensor field. However, such a field often contains unwanted degenerate points which cannot always be eliminated due to topological constraints of the underlying surface. To reduce the artifacts caused by these degenerate points, our system allows the user to move a degenerate point or to cancel a pair of degenerate points that have opposite tensor indices. These operations provide control over the number and location of the degenerate points in the field. We observe that a tensor field can be locally converted into a vector field so that there is a one-to-one correspondence between the set of degenerate points in the tensor field and the set of singularities in the vector field. This conversion allows us to effectively perform degenerate point pair cancellation and movement by using similar operations for vector fields. In addition, we adapt the image-based flow visualization technique to tensor fields, therefore allowing interactive display of tensor fields on surfaces. We demonstrate the capabilities of our tensor field design system with painterly rendering, pen-and-ink sketching of surfaces, and anisotropic remeshing
机译:在许多图形应用中,设计平面和曲面上的张量场是一项必不可少的任务,例如绘画绘制,平滑曲面的笔墨素描和各向异性重绘。在本文中,我们提供了一个交互式设计系统,该系统允许用户从头开始或通过修改有意义的输入张量场(例如曲率张量)在3D表面上创建各种各样的对称张量场。我们的系统将每个用户规范转换为基本张量字段,并将它们与输入字段组合以构成初始张量字段。但是,这样的场通常包含不需要的退化点,由于下面表面的拓扑约束,这些退化点不能总是被消除。为了减少由这些退化点引起的伪影,我们的系统允许用户移动退化点或取消张量指数相反的一对退化点。这些操作可以控制退化点在现场的数量和位置。我们观察到张量场可以局部转换为矢量场,从而在张量场中的简并点集与矢量场中的奇点集之间存在一一对应的关系。这种转换使我们可以通过对矢量场使用类似的操作来有效执行退化的点对消除和移动。此外,我们使基于图像的流可视化技术适应张量场,因此允许在表面上交互式显示张量场。我们通过绘画渲染,表面的笔墨素描和各向异性重画展示了张量场设计系统的功能

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