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首页> 外文期刊>IEEE transactions on automation science and engineering: a publication of the IEEE Robotics and Automation Society >Toward Energy-Efficient Rescheduling Decision Mechanisms for Flexible Job Shop With Dynamic Events and Alternative Process Plans
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Toward Energy-Efficient Rescheduling Decision Mechanisms for Flexible Job Shop With Dynamic Events and Alternative Process Plans

机译:实现具有动态事件和替代工艺计划的灵活作业车间的节能重新调度决策机制

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摘要

With the surging energy cost and environmental impacts, strategies to achieve energy-efficient production have attracted increasing concerns of the manufacturing enterprises. For the fact that most manufacturing systems operate in a dynamic and nondeterministic environment, rescheduling strategies may be beneficial as it serves for adaption of initial schedule to dynamic events. Besides that, the development of modern information technology in manufacturing practice enables the flexibility of production toward alternative process plans. However, very little research has focused on the rescheduling problem integrated with process planning for energy saving. Hence, this work undertakes this challenge by proposing rescheduling decision mechanisms in response to two typical dynamic events with alternative process plans for energy-efficient flexible job shops. More specifically, by modeling the energy consumption of the flexible manufacturing system, the problem is first formulated as a mixed-integer programming optimization model. Rescheduling mechanisms for both new job arrivals and machine tool breakdowns are then designed, based on which a rescheduling algorithm is proposed in the form of a heuristic framework. The significance of the proposed algorithm is exemplified by a comparative case study under various scenarios. Note to Practitioners—The complex process plan selection and dynamic events in flexible job shops make the energy-aware schedule decision a challenging problem. Rescheduling addresses this issue, however, most existing rescheduling algorithms assume that only one process plan is given with a predetermined process route and machine tool allocation. This reduces the effectiveness of energy-saving for such a dynamic and flexible manufacturing system. This article, for the first time, to the best of our knowledge, proposes rescheduling decision mechanisms to generate schedules that can adapt to dynamic events and are energy-efficient with process plan flexibility. It may assist decision-makers to provide more practical and applicable energy-efficient schedules for flexible job shops, particularly when dynamic variations of the production environment occurred frequently.
机译:随着能源成本的飙升和环境影响,实现节能生产的策略越来越受到制造企业的关注。由于大多数制造系统在动态和非确定性环境中运行,重新调度策略可能是有益的,因为它有助于将初始调度调整为动态事件。除此之外,现代信息技术在制造实践中的发展使生产能够灵活地采用替代工艺计划。然而,很少有研究关注与节能工艺规划相结合的重新调度问题。因此,这项工作通过提出重新安排决策机制来应对两个典型的动态事件,并为节能的灵活作业车间提供替代工艺计划。更具体地说,通过对柔性制造系统的能耗进行建模,首先将问题表述为混合整数规划优化模型。然后,设计了新到岗和机床故障的重新调度机制,并在此基础上提出了一种启发式框架形式的调度算法。通过各种场景下的比较案例研究,说明了所提算法的重要性。从业人员须知 — 灵活的作业车间中复杂的工艺计划选择和动态事件使能源意识进度决策成为一个具有挑战性的问题。重新调度解决了这个问题,但是,大多数现有的调度算法都假设只有一个具有预定工艺路线和机床分配的工艺计划。这降低了这种动态和灵活的制造系统的节能效果。据我们所知,本文首次提出了重新安排决策机制,以生成可以适应动态事件的时间表,并且具有工艺计划的灵活性。它可以帮助决策者为灵活的作业车间提供更实用和适用的节能时间表,特别是在生产环境经常发生动态变化的情况下。

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