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Conceptual robustness in simultaneous engineering: An extension of Taguchi's parameter design

机译:同步工程中的概念鲁棒性:Taguchi参数设计的延伸

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摘要

Simultaneous engineering processes involve multifunctional teams; team members simultaneously make decisions about many parts of the product-production system and aspects of the product life cycle. This paper argues that such simultaneous distributed decisions should be based on communications about sets of possibilities rather than single solutions. By extending Taguchi's parameter design concepts, we develop a robust and distributed decision-making procedure based on such communications. The procedure shows how a member of a design team can make appropriate decisions based on incomplete information from the other members of the team. More specifically, it (1) treats variations among the designs considered by other members of the design team as conceptual noise; (2) shows how to incorporate such noises into decisions that are robust against these variations; (3) describes a method for using the same data to provide preference information back to the other team members; and (4) provides a procedure for determining whether to release the conceptually robust design or to wait for further decisions by others. The method is demonstrated by part of a distributed design process for a rotary CNC milling machine. While Taguchi's approach is used as a starting point because it is widely known, these results can be generalized to use other robust decision techniques.
机译:同时工程过程涉及多功能团队;团队成员同时做出关于产品生产系统的许多部分的决定和产品生命周期的各个方面。本文认为,这种同步分布式决策应基于关于可能性集而不是单一解决方案的通信。通过扩展Taguchi的参数设计概念,我们基于此类通信开发一种强大而分布的决策过程。该程序显示了设计团队的成员如何根据团队其他成员的不完整信息做出适当的决策。更具体地说,它(1)将设计团队的其他成员考虑为概念噪音的设计中考虑的设计中的变化; (2)展示如何将此类噪声纳入对这些变化的强大的决策; (3)描述了一种使用相同数据来向其他团队成员提供偏好信息的方法; (4)提供了确定是否释放概念强壮的设计或等待他人进一步决定的程序。该方法是通过用于旋转数控铣床的分布式设计方法的一部分来证明该方法。虽然Taguchi的方法用作起点,因为它是众所周知的,但这些结果可以推广使用其他鲁棒的决策技术。

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