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Volume Parameterization for Design Automation of Customized Free-Form Products

机译:定制自由格式产品设计自动化的体积参数化

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This paper addresses the problem of volume parameterization that serves as the geometric kernel for design automation of customized free-form products. The purpose of volume parameterization is to establish a mapping between the spaces that are near to two reference free-form models, so that the shape of a product presented in free-form surfaces can be transferred from the space around one reference model to another reference model. The mapping is expected to keep the spatial relationship between the product model and reference models as much as possible. We separate the mapping into rigid body transformation and elastic warping. The rigid body transformation is determined by anchor points defined on the reference models using a least-squares fitting approach. The elastic warping function is more difficult to obtain, especially when the meshes of the reference objects are inconsistent. A three-stage approach is conducted. First, a coarse-level warping function is computed based on the anchor points. In the second phase, the topology consistency is maintained through a surface fitting process. Finally, the mapping of volume parameterization is established on the surface fitting result. Compared to previous methods, the approach presented here is more efficient. Also, benefitting from the separation of rigid body transformation and elastic warping, the transient shape of a transferred product does not give unexpected distortion. At the end of this paper, various industry applications of our approach in design automation are demonstrated. Note to Practitioners-The motivation of this research is to develop a geometric solution for the design automation of customized free-form objects, which can greatly improve the efficiency of design processes in various industries involving customized products (e.g., garment design, toy design, jewel design, shoe design, and glasses design, etc.). The products in the above industries are usually composed of a very complex geometry sha-pe (represented by free-form surfaces), and is not driven by a parameter table but a reference object with free-form shapes (e.g., mannequin, toy, wrist, foot, and head models). After carefully designing a product around one particular reference model, it is desirable to have an automated tool for "grading" this product to other shape-changed reference objects while retaining the original spatial relationship between the product and reference models. This is called the design automation of a customized free-form object. Current commercial 3-D/2-D computer-aided design (CAD) systems, developed for the design automation of models with regular shape, cannot support the design automation in this manner. The approach in this paper develops efficient techniques for constraining and reconstructing a product represented by free-form surfaces around reference objects with different shapes, so that this design automation problem can be fundamentally solved. Although the approach has not been integrated into commercial CAD systems, the results based on our preliminary implementation are encouraging-the spatial relationship between reference models and the customized products is well preserved
机译:本文解决了体积参数化的问题,体积参数化是定制自由格式产品的设计自动化的几何核心。体积参数化的目的是在靠近两个参考自由形式模型的空间之间建立映射,以便可以将自由形式表面中呈现的产品的形状从一个参考模型周围的空间转移到另一个参考模型。模型。期望映射可以尽可能保持产品模型和参考模型之间的空间关系。我们将映射分为刚体变形和弹性变形。通过使用最小二乘拟合法在参考模型上定义的锚点确定刚体变换。弹性变形函数更难获得,尤其是在参考对象的网格不一致时。进行了三个阶段的方法。首先,基于锚点计算粗略翘曲函数。在第二阶段,通过表面拟合过程保持拓扑一致性。最后,在曲面拟合结果上建立体积参数化的映射。与以前的方法相比,此处介绍的方法效率更高。同样,得益于刚体变形和弹性翘曲的分离,转移产品的瞬态形状不会产生意想不到的变形。在本文的结尾,展示了我们的方法在设计自动化中的各种行业应用。给从业者的注意-此研究的目的是为定制的自由形式对象的设计自动化开发一种几何解决方案,该解决方案可以大大提高涉及定制产品(例如服装设计,玩具设计,珠宝设计,鞋设计和眼镜设计等)。上述行业的产品通常由非常复杂的几何形状(由自由形式的表面表示)组成,并且不受参数表的驱动,而是由具有自由形状的参考对象(例如,人体模型,玩具,腕部,足部和头部模型)。在围绕一个特定参考模型仔细设计产品之后,希望拥有一种自动工具,用于将该产品“渐变”为其他形状已更改的参考对象,同时保留产品和参考模型之间的原始空间关系。这称为自定义自由格式对象的设计自动化。当前的商业化3D / 2D计算机辅助设计(CAD)系统是为具有常规形状的模型的设计自动化而开发的,不能以这种方式支持设计自动化。本文中的方法开发了有效的技术来约束和重构以不同形状的参考对象为中心的自由曲面表示的产品,从而可以从根本上解决该设计自动化问题。尽管该方法尚未集成到商业CAD系统中,但基于我们初步实施的结果令人鼓舞-参考模型与定制产品之间的空间关系得到了很好的保留

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