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首页> 外文期刊>ACM Transactions on Graphics >An intuitive framework for real-time freeform modeling
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An intuitive framework for real-time freeform modeling

机译:实时的自由形式建模的直观框架

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摘要

We present a freeform modeling framework for unstructured triangle meshes which is based on constraint shape optimization. The goal is to simplify the user interaction even for quite complex freeform or multiresolution modifications. The user first sets various boundary constraints to define a custom tailored (abstract) basis function which is adjusted to a given design task. The actual modification is then controlled by moving one single 9-dof manipulator object. The technique can handle arbitrary support regions and piecewise boundary conditions with smoothness ranging continuously from C-0 to C-2. To more naturally adapt the modification to the shape of the support region, the deformed surface can be tuned to bend with anisotropic stiffness. We are able to achieve real-time response in an interactive design session even for complex meshes by precomputing a set of scalar-valued basis functions that correspond to the degrees of freedom of the manipulator by which the user controls the modification.
机译:我们提出了一种基于约束形状优化的非结构化三角形网格的自由形式建模框架。目的是简化用户交互,即使是相当复杂的自由格式或多分辨率修改。用户首先设置各种边界约束以定义自定义的定制(抽象)基础函数,该函数可针对给定的设计任务进行调整。然后通过移动一个9dof机械手对象来控制实际的修改。该技术可以处理任意支撑区域和分段边界条件,且平滑度范围从C-0到C-2连续。为了更自然地使修改适应支撑区域的形状,可以将变形的表面调整为具有各向异性刚度的弯曲。通过预先计算一组与用户控制修改的操纵器的自由度相对应的标量值基函数,即使对于复杂的网格,我们也能够在交互式设计会话中实现实时响应。

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