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引用次数: 53
摘要
CAD系统之间的数据交换是一个极其重要的实体建模概念,是该领域理论和实际应用的基础。两种主要的数据交换范式是几何数据交换和参数数据交换。几何数据交换是一种常用的交换对象边界表示的方法。参数化(或基于特征的)DE是一种新颖的方法,在这种方法中,给定源系统中的参数化历史(特征)图,目标是在目标系统中构造一个图,该图在保留尽可能多的参数信息的同时产生相似的几何形状。每种方法都有其用途和相关问题。本文介绍了一种在单个部件(对象)级别上集成参数数据和几何数据交换的方法——几何每特征(Geometry Per Feature, GPF)。特征可以根据用户指南和系统约束进行参数化或几何化交换。在目标系统中,结果模型使用历史树表示,而不考虑被重写为几何特征的原始参数特征的数量。使用这种方法,我们最大限度地提高了整体参数数据的交换,克服了基于特征的数据交换的主要障碍之一。
Integrated feature-based and geometric CAD data exchange
Data exchange between CAD systems is an extremely important solid modeling concept, fundamental both for the theory of the field and for its practical applications. The two main data exchange (DE) paradigms are geometric and parametric DE. Geometric DE is the ordinary method, in which the boundary representation of the object is exchanged. Parametric (or feature-based) DE is a novel method where, given a parametric history (feature) graph in a source system, the goal is to construct a graph in the target system that results in similar geometry while preserving as much parametric information as possible. Each method has its uses and associated problems.In this paper, we introduce Geometry Per Feature (GPF), a method for integration of parametric and geometric data exchange at the single part (object) level. Features can be exchanged either parametrically or geometrically, according to user guidelines and system constraints. At the target system, the resulting model is represented using a history tree, regardless of the amount of original parametric features that have been rewritten as geometric ones. Using this method we maximize the exchange of overall parametric data and overcome one of the main stumbling blocks for feature-based data exchange.