首页> 外文会议>2011 9th IEEE International Conference on Industrial Informatics >A real-time rescheduling heuristic using decentralized knowledge-based decisions for flexible flow shops with unrelated parallel machines
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A real-time rescheduling heuristic using decentralized knowledge-based decisions for flexible flow shops with unrelated parallel machines

机译:使用分散的基于知识的决策对具有无关并行机的灵活流水车间进行实时重新调度启发式

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In a manufacturing planning and control system, a change of system environment or of the production requirements may invalidate the current production schedule. In that case, rescheduling as a self-adaption function of the system is necessary for generating a new schedule, regarding the current state of the production system. This rescheduling process is time critical and normally requires real time solutions. In this paper we present a rescheduling approach with offline self-learning and online self-decision-making abilities. It solves the rescheduling problem of flexible flow shops (FFS) with unrelated parallel machines. The optimality criterion is the makespan. The approach uses a centralized heuristic to guarantee the generation of active schedules. In addition, it integrates a decentralized knowledge-based decision making system in the heuristic. This decision making system can learn from previous scheduling problems and their schedules. Consequently, it uses the obtained knowledge to dynamically select the most appropriate dispatching rule for scheduling the production, depending on the current system state. Computational results show that the proposed approach is superior to only using one single dispatching rule constantly. Furthermore, due to its efficient runtime the approach is suitable for real time applications.
机译:在制造计划和控制系统中,系统环境或生产要求的更改可能会使当前的生产计划无效。在那种情况下,对于生产系统的当前状态,重新安排作为系统的自适应功能对于生成新的计划是必要的。这种重新安排过程是时间紧迫的,通常需要实时解决方案。在本文中,我们提出了一种具有离线自我学习和在线自我决策能力的重新计划方法。它解决了不相关并行机器的柔性流水车间(FFS)的重新调度问题。最佳标准是制造期。该方法使用集中式启发式方法来保证活动时间表的生成。另外,它在启发式方法中集成了基于分散知识的决策系统。该决策系统可以从先前的调度问题及其调度中学习。因此,它根据当前系统状态,使用获得的知识动态地选择最合适的调度规则来调度生产。计算结果表明,该方法优于仅连续使用一种调度规则。此外,由于其高效的运行时间,该方法适用于实时应用。

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