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Geometric Constraint Solving in Parametric Computer-Aided Design

机译:参数化计算机辅助设计中的几何约束求解

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With parametric computer-aided design (CAD) software, designers can create geometric models that are easily updated (within limits) by modifying the values of controlling parameters. These numeric and non-numeric parameters control the geometry in two ways: parametric operations and geometric constraint solving. This paper examines the advances over the last decade in the representation of parametric operations and of solving geometric constraint problems. An extensive literature has grown up surrounding geometric constraint solving and there has been substantial progress in the types of objects and constraints that can be handled robustly. Yet parametric operations have remained largely within the same conceptualization and begin to limit the flexibility of CAD systems, since they still do not align well with a systematic design process.
机译:使用参数化计算机辅助设计(CAD)软件,设计人员可以创建几何模型,这些几何模型可以通过修改控制参数的值轻松地更新(在限制范围内)。这些数字和非数字参数以两种方式控制几何:参数运算和几何约束求解。本文考察了过去十年在参数化运算的表示和解决几何约束问题方面的进展。围绕几何约束求解的大量文献已经发展起来,并且可以稳健处理的对象和约束类型也取得了长足的进步。然而,由于参数操作仍不能与系统设计过程很好地吻合,因此它们在很大程度上仍处于相同的概念范围内,并开始限制CAD系统的灵活性。

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