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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Real-time control and scheduling of flexible manufacturing systems: An ordinal optimisation based approach
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Real-time control and scheduling of flexible manufacturing systems: An ordinal optimisation based approach

机译:柔性制造系统的实时控制和调度:基于序数优化的方法

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摘要

A unique real-time control and scheduling framework for flexible manufacturing systems (FMS) is presented in this paper. The framework enables the adoption of different scheduling policies for short-term intervals when responding to the dynamicchanges of the FMS shop floor status. Each time when rescheduling is called for, standard clock (SC) simulation is first employed to evaluate the performance of a set of scheduling policies for a short planning horizon. The ordinal optimisation concept is then used to choose quickly the most desirable scheduling policy. Owing to the use of the standard clock technique and the ordinal optimisation concept, this framework accomplishes a dramatic reduction in the time needed for decision making, the essential requirement for realtime control. It is also found that as the scale of the problem increases, the decision-making time increases linearly rather than exponentially. These two important features indicate that this framework has the potential for beingsuccessfully implemented in real FMS settings. Although the framework cannot always guarantee the global "best" performance, the case study indicates that satisfactory performance results are always achieved by using this framework.
机译:本文提出了一种用于柔性制造系统(FMS)的独特的实时控制和调度框架。当响应FMS车间状态的动态变化时,该框架允许在短期间隔内采用不同的调度策略。每次需要重新计划时,首先都会使用标准时钟(SC)仿真来评估一组计划策略在较短的计划范围内的性能。然后使用顺序优化概念来快速选择最理想的调度策略。由于使用了标准时钟技术和有序的优化概念,该框架极大地减少了决策所需的时间,这是实时控制的基本要求。还发现,随着问题规模的增加,决策时间呈线性增长,而不是呈指数增长。这两个重要功能表明该框架具有在实际FMS设置中成功实施的潜力。尽管该框架不能始终保证全局的“最佳”性能,但案例研究表明,使用此框架始终可以实现令人满意的性能结果。

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