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Directive Mode for the Semi-Heterarchical Control Architecture of a Flexible Manufacturing system

机译:柔性制造系统的半分层控制架构的指令模式

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Manufacturing industries are challenged of accomplishing effective operations regardless of perturbations during execution. For this reason, manufacturing control systems must be able to manage the scheduling of production towards the efficiency and reactivity of operations. For many approaches, the use of priority rules has proven to be a simple and efficient technique to address the efficiency and reactivity objectives, compared to other scheduling methods. Still, the use of this technique is focused on offline scheduling rather the online dynamic scheduling. For this reason, this paper proposed the use of priority rules for improving the reactivity features of a semi-heterarchical control system. Our proposal consists of a bi-level architecture where a high-level component proposes a set of priority rules that lower components follow. In a called directive mode, the high-level components optimize the set of priority rules in order that a more autonomous lower component chooses during execution. The directive mode is based on a set of simple and specific rules, as well as low complexity decision mechanisms pre-tested in a simulated environment. To show the contribution, we tested our approach in a simulated model of a real FMS in a simulation-based software. Experimental results demonstrate that the increase of autonomy given to the lower levels improves the efficiency after perturbations.
机译:制造业面临有效执行操作的挑战,而不受执行过程中的干扰。因此,制造控制系统必须能够针对生产的效率和反应性来管理生产计划。对于许多方法而言,与其他调度方法相比,使用优先级规则已被证明是解决效率和反应性目标的一种简单有效的技术。尽管如此,此技术的使用仍集中在脱机计划而不是在线动态计划上。因此,本文提出使用优先级规则来改善半分级控制系统的反应性。我们的建议包含一个双层体系结构,其中高层组件提出了一组优先级规则,而较低的组件遵循这些规则。在所谓的指令模式下,高级组件优化优先级规则集,以便在执行过程中选择更自治的下级组件。指令模式基于一组简单且特定的规则,以及在模拟环境中预先测试的低复杂度决策机制。为了显示这一贡献,我们在基于仿真的软件中,在真实FMS的仿真模型中测试了我们的方法。实验结果表明,较低级别的自主性增加会提高扰动后的效率。

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