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Using simulation and multi-criteria methods to provide robust solutions to dispatching problems in a flow shop with multiple processors

机译:使用仿真和多准则方法为使用多个处理器的流水车间中的调度问题提供可靠的解决方案

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摘要

Dispatching rules are important to the performance of a manufacturing system. Selective applications of different priority rules at different processing stages in a multiple workstation manufacturing system have a positive impact on shop performance. This type of problem is a combinatorial dispatching decision. However, no dispatching rule can consistently produce better performance than all other rules under a variety of operating conditions and criteria. It is the purpose of this study to provide a robust solution for a dispatching decision that will have 'good' performance under different operating scenarios. In this paper a simulation case of a flow shop with multiple processors is proposed, specifically a multi-layer ceramic capacitor manufacturing system. Two multiple criteria decision-making methods - techniques for order preference by similarity to ideal solution (TOPSIS) and an analytic hierarchy process (AHP) - in combination with Taguchi orthogonal array are used to find the most suitable dispatching rule for every workstation. The results show that for 15 production scenarios and 4 criteria this combinatorial dispatching rule is robust, in the sense that it outperforms other commonly employed strategies.
机译:调度规则对于制造系统的性能很重要。在多工作站制造系统的不同处理阶段中,不同优先级规则的选择性应用对车间性能产生积极影响。这种类型的问题是组合调度决策。但是,在各种操作条件和条件下,没有任何调度规则能够始终如一地产生比所有其他规则更好的性能。这项研究的目的是为调度决策提供一个可靠的解决方案,该决策在不同的操作场景下将具有“良好”的性能。在本文中,提出了具有多个处理器的流水车间的仿真案例,特别是多层陶瓷电容器制造系统。两种多准则决策方法-通过类似于理想解决方案的顺序偏好技术(TOPSIS)和层次分析法(AHP)-与Taguchi正交阵列相结合,用于为每个工作站找到最合适的调度规则。结果表明,对于15个生产场景和4个条件,此组合调度规则在某种程度上胜于其他常用策略,因此具有较强的鲁棒性。

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