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INVERSE PARAMETRIC MODELING FROM INDEPENDENTLY GENERATED PRODUCT DATA SETS

机译:从独立生成的产品数据集中的逆参数建模

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Parametric modeling has become a widely accepted mechanism for generating data set variants for product families. These data sets that include geometric models and feature-based process plans are created by specifying values for parameters within feasible ranges specified as constraints in the definition. The ranges denote the extent or envelope of the product family. Increasingly, with globalization the inverse problem is becoming important. This takes independently generated product data sets that on observation belong to the same product family and creates a parametric model for that family. This problem is also of relevance to large companies where independent design teams may work on product variants without much collaboration only to attempt consolidation later on to optimize the design of manufacturing processes and systems. In this paper we present a methodology for generating a feature-based part family parametric model through merging independently generated product data sets. We assume that these data sets are feature-based with relationships such as precedences captured using graphs. Since there are typically numerous ways in which these data sets can be merged, we formulate this as an optimization problem and solve using the A algorithm. The parameter ranges generated by this approach will be used to design appropriate Reconfigurable Machine Tools (RMTs) and systems (RMS) for manufacturing the resulting part family.
机译:参数建模已成为为产品系列生成数据集变量的广泛接受的机制。这些数据集包括几何模型和基于特征的过程计划,通过指定指定为定义中的约束的可行范围内的参数值。该范围表示产品系列的范围或包络。越来越多地,全球化逆问题变得重要。这需要独立生成的产品数据集,即观察属于同一产品系列,并为该系列创建参数模型。此问题的同样与大型公司相关的,独立设计团队可能在没有多大合作的产品变体上工作,仅稍后尝试整合,以优化制造过程和系统的设计。在本文中,我们介绍了一种通过合并独立生成的产品数据集来生成基于特征的零件家庭参数模型的方法。我们假设这些数据集是基于与使用图形捕获的优先级的关系的特征。由于通常可以合并这些数据集的许多方式,因为我们将其标记为优化问题并使用算法解决。通过该方法产生的参数范围将用于设计适当的可重新配置机床(RMT)和系统(RMS),用于制造所产生的部件。

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