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A Constraint-based Approach for the Optimum Redesign of a Packaging Operation

机译:基于约束的包装操作最佳重新设计方法

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The task of the design engineer is to configure a design such that a predetermined functional requirement is fulfilled, and that it is achieved within a given set of performance criteria. As a design evolves, so these performance criteria change, driven by the ever-increasing needs of the customer and the inherent competition between manufacturers. It is during this evolutionary process that the engineer demands a CAD system which can represent knowledge about the design and explore solutions regarding the relationship between geometry and behaviour. This is necessary in order to realize the full potential of an existing design, or to examine modifications to an existing design that may achieve the desired performance characteristics. The work described in this paper uses a constraint-based modelling environment to represent and analyse a high-speed packaging operation. The goal of the modelling work is to produce an optimal design solution for the given performance requirements, as well as to satisfy the constraints imposed by the existing machine system and packaging process. The construction of the model is described and the identification and representation of the design constraints are discussed. These constraints are then applied to a possible machine modification or redesign and an optimized configuration is developed in the modelling environment.
机译:设计工程师的任务是配置设计,以便满足预定的功能要求,并在给定的一组性能标准内实现该要求。随着设计的发展,这些性能标准会随着客户不断增长的需求以及制造商之间固有的竞争而变化。正是在这个不断发展的过程中,工程师需要一个CAD系统,该系统可以表示有关设计的知识并探索有关几何与行为之间关系的解决方案。为了实现现有设计的全部潜能,或检查对现有设计的修改以实现所需的性能特征,这是必需的。本文描述的工作使用基于约束的建模环境来表示和分析高速包装操作。建模工作的目标是针对给定的性能要求提供最佳的设计解决方案,并满足现有机器系统和包装过程所施加的约束。描述了模型的构造,并讨论了设计约束条件的识别和表示。然后将这些约束条件应用于可能的机器修改或重新设计,并在建模环境中开发优化的配置。

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