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Robust production planning and control for multi-stage systems with flexible final assembly lines

机译:具有灵活的最终装配线的多阶段系统的稳健生产计划和控制

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摘要

Production planning of final assembly systems is a challenging task, as the often fluctuating order volumes require flexible solutions. Besides, the calculated plans need to be robust against the process-level disturbances and stochastic nature of some parameters like manual processing times or machine availability. In the paper, a simulation-based optimisation method is proposed that utilises lower level shop floor data to calculate robust production plans for final assembly lines of a flexible, multi-stage production system. In order to minimise the idle times when executing the plans, the capacity control that specifies the proper operator-task assignments is also determined. The analysed multi-stage system is operated with a pull strategy, which means that the production at the final assembly lines generates demands for the preceding stages providing the assembled components. In order to guarantee the feasibility of the plans calculated for the final assembly lines, a decomposition approach is proposed to optimise the production plan of preceding stages. By this way, the robust production can be ensured resulting in reduced losses and overall production costs even though the system is exposed to changes and disturbances.
机译:最终装配系统的生产计划是一项艰巨的任务,因为经常波动的订单量需要灵活的解决方案。此外,所计算的计划必须对过程级干扰和某些参数(例如手动处理时间或机器可用性)的随机性具有鲁棒性。在本文中,提出了一种基于仿真的优化方法,该方法利用较低级别的车间数据来为灵活的多阶段生产系统的最终装配线计算鲁棒的生产计划。为了使执行计划时的闲置时间最小化,还确定了用于指定正确操作员任务分配的容量控制。所分析的多级系统采用拉动策略进行操作,这意味着最终组装线的生产会产生对提供已组装组件的前级的需求。为了保证为最终装配线计算的计划的可行性,提出了一种分解方法来优化前阶段的生产计划。通过这种方式,即使系统受到变化和干扰,也可以确保稳健的生产,从而减少损失和总体生产成本。

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