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Computing Completion Time and Optimal Scheduling of Design Activities in Concurrent Product Development Process

机译:并行产品开发过程中计算完成时间和设计活动的最佳计划

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摘要

This paper proposes a time-computing model and a scheduling method for shortening the completion time of product development under the given rework cost budget. As overlapping and iteration exist between or among design activities in concurrent product development, predictability and efficiency of the process deserve attention. By using the corresponding design structure matrix, the characteristics of information flow are obtained and applied to analysis of the dynamic behavior of the product development process. A time-computing model is set up to estimate the rework cost and completion time of each of the activities, between which both iteration and overlapping are observed. Through sequential quadratic programming, an optimization algorithm is developed for minimizing the development completion time under the constraint of the given rework cost budget. Our application results acquired from our experiments have verified the feasibility and validity of the approach.
机译:本文提出了一种在给定的返工成本预算下,缩短产品开发完成时间的时间计算模型和调度方法。由于在并行产品开发中的设计活动之间或之中存在重叠和迭代,因此过程的可预测性和效率值得关注。通过使用相应的设计结构矩阵,可以获得信息流的特征并将其应用于产品开发过程的动态行为分析。建立了时间计算模型以估计每个活动的返工成本和完成时间,在此之间可以观察到迭代和重叠。通过顺序二次编程,开发了一种优化算法,用于在给定的返工成本预算约束下,最大限度地缩短开发完成时间。通过实验获得的应用结果证明了该方法的可行性和有效性。

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