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首页> 外文期刊>International Journal of Production Research >Schedule robustness analysis with the help of attainable sets in continuous flow problem under capacity disruptions
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Schedule robustness analysis with the help of attainable sets in continuous flow problem under capacity disruptions

机译:在容量中断的情况下,借助连续流问题中的可获集来安排鲁棒性分析

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摘要

Continuous flow scheduling problems have their place in many industries such as gas, oil, chemicals, glass and fluids production as well as production of granular goods and steel details. The disruptions in processing capacities may result in schedule performance decrease. In this paper, we develop a new method for robustness analysis of those schedules that are formulated in continuous time in the state-space domain. The developed method is based on attainable sets (ASs) that allow computing a form to represent the states and performance of schedules in regard to different capacity degradation levels. Having such a form, it becomes possible to estimate the schedule robustness. The technical development and approximation of ASs are presented. A robustness index is developed on the basis of the minimax regret approach, and it can be used for decision-makers regarding the trade-off 'performance vs. robustness'. As such, it becomes possible to compare maximal possible profits in situations without disruptions and realistic profits subject to some robustness investments and costs of protection against disruptions. With the presented results, it becomes possible to obtain ASs for interval data with no a priori information about perturbation impacts, i.e. for non-stationary perturbations. ASs permit to consider perturbations and schedule performances as time functions. Perturbation functions may be set up for different uncertainty scenarios, including interval perturbations.
机译:连续流调度问题在许多行业中都占有一席之地,例如天然气,石油,化工,玻璃和流体生产以及粒状产品和钢零件的生产。处理能力的中断可能会导致调度性能下降。在本文中,我们开发了一种新的方法,用于对那些在状态空间域中连续时间内制定的计划进行鲁棒性分析。所开发的方法基于可达到的集合(AS),可实现的集合允许计算形式来表示有关不同容量降级级别的进度表的状态和性能。通过具有这种形式,可以估计调度的鲁棒性。介绍了AS的技术发展和近似。稳健性指标是基于最小最大后悔法开发的,可用于决策者在权衡“性能与稳健性”之间进行权衡。这样,就有可能在没有中断的情况下比较最大可能的利润,而受到一些稳健性投资和防止中断成本的现实利润。利用给出的结果,有可能获得用于区间数据的AS,而没有关于扰动影响的先验信息,即对于非平稳扰动。 AS允许将干扰和时间表性能视为时间函数。可以为不同的不确定性场景设置扰动函数,包括区间扰动。

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