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Snake pedals: compact and versatile geometric models with physics-based control

机译:蛇形踏板:紧凑且通用的几何模型,具有基于物理的控制

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We introduce a geometric shape modeling scheme which allows for representation of global and local shape characteristics of an object. Geometric models are well-suited for representing global shapes without local detail, but we propose a scheme which represents global shapes with local detail and permits model shaping as well as topological changes via physics-based control. The scheme represents shapes by pedal curves and surfaces, i.e. the loci of the foot of perpendiculars to the tangents of a fixed curve/surface from a fixed point called the pedal point. By varying the location of the pedal point, one can synthesize a large class of shapes which exhibit both local and global deformations. We introduce physics-based control for shaping these geometric models by letting the pedal point vary and use a snake to represent the position of this varying point. The model, a "snake pedal", allows for interactive manipulation via forces applied to the snake. We develop a fast numerical iterative algorithm for shape recovery from image data using this scheme. The algorithm involves the Levenberg-Marquardt (LM) method in the outer loop for solving the global parameters and the alternating direction implicit (ADI) method in the inner loop for solving the local parameters of the model. The combination of the global and local scheme leads to an efficient numerical solution to the model fitting problem. We demonstrate the applicability of this modeling scheme via examples of shape synthesis and shape estimation from real image data.
机译:我们介绍了一种几何形状建模方案,该方案可以表示对象的整体和局部形状特征。几何模型非常适合表示没有局部细节的整体形状,但是我们提出了一种方案,该方案代表具有局部细节的整体形状,并允许通过基于物理的控制进行模型塑形和拓扑更改。该方案通过踏板曲线和表面来表示形状,即从称为踏板点的固定点到与固定曲线/表面的切线垂直的脚的轨迹。通过改变踏板点的位置,可以合成一类既显示局部变形又显示整体变形的形状。我们引入了基于物理的控制,通过改变踏板点的形状来塑造这些几何模型,并使用蛇来代表该变化点的位置。该模型称为“蛇形踏板”,允许通过施加到蛇上的力进行交互式操纵。我们开发了一种快速的数值迭代算法,用于使用该方案从图像数据中恢复形状。该算法在外部循环中使用Levenberg-Marquardt(LM)方法来求解全局参数,在内部循环中使用交替方向隐式(ADI)方法来求解模型的局部参数。全局和局部方案的组合导致模型拟合问题的有效数值解。我们通过从真实图像数据进行形状合成和形状估计的示例来证明此建模方案的适用性。

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