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A shortest path method for sequential change propagations in complex engineering design processes

机译:复杂工程设计过程中顺序更改传播的最短路径方法

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Engineering design changes constantly occur in complex engineering design processes. Designers need appropriate measures to handle the numerous design changes in order to realize consistent and completely validated product models so that successful product development is assured. In this paper, a time-based mathematic model is presented to characterize the sequential change propagation process, and then the shortest path algorithm is given to find the most timesaving routes for changes to propagate to other dependent design tasks. An analysis method is introduced to compute the sensitivities of change impacts on the affected design tasks, which indicates that the more time consumed by a change to take its effect, the more sensitive the change impacts on those downstream dependent tasks. A case study of change propagations in motorcycle engine design process was presented to demonstrate the proposed method.
机译:工程设计变更在复杂的工程设计过程中不断发生。设计师需要采取适当的措施来应对众多设计变更,以实现一致且经过完全验证的产品模型,从而确保成功开发产品。本文提出了一个基于时间的数学模型来描述顺序变更传播过程,然后给出了最短路径算法以找到最省时的变更传播到其他相关设计任务的途径。引入了一种分析方法来计算变更对受影响的设计任务的敏感性,这表明变更生效所花费的时间越长,变更对那些下游相关任务的影响就越敏感。以摩托车发动机设计过程中的变化传播为例,对所提出的方法进行了验证。

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