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Event-driven production rescheduling in job shop environments Application to sheet metal production processes

机译:求职生产中重新安排在工作店环境中申请金属生产过程

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Unpredictable incoming orders and the required nesting process highly complicate production planning and scheduling in sheet metal job shop environments and cause extremely high lead times as well as intermediate stocks. For this, numerous advanced planning and scheduling (APS) algorithms exist, aiming at creating a globally optimized production schedule. Due to the complexity of the multi-objective optimization and the large amount of unforeseen shop-floor events, effective and applicable solutions have not been presented so far. This work introduces an event-driven rescheduling concept based on lean principles leading to a high responsiveness of the production process to any kind of deviation. The achieved, significantly smaller buffer occupancies enable shorter lead times and improved delivery time estimations. Excellent performance results of the rescheduling concept are shown in different simulation experiments. The presented concept can easily be implemented in any kind of sheet metal job shop and its respective IT infrastructure.
机译:不可预测的来订单和所需的嵌套过程高度复杂化生产计划和在钣金职位商店环境中调度,并导致极高的交货时间以及中间股。为此,存在众多高级计划和调度(APS)算法,旨在创建全局优化的生产计划。由于多目标优化的复杂性和大量的不可预见的商店地板事件,到目前为止还没有提出有效和适用的解决方案。这项工作基于精益原则介绍了一个事件驱动的Rescheding概念,导致生产过程的高响应性与任何类型的偏差。实现的,显着较小的缓冲率占用使得能够更短的交货时间和改进的交付时间估计。在不同的仿真实验中显示了重新安排概念的优异性能结果。所提出的概念可以在任何类型的钣金作业商店及其各自的IT基础架构中轻松实现。

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