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Semi-heterarchical architecture to AGV adjustable autonomy within FMSs

机译:FMSS中AGV可调自主的半同架构

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A flexible manufacturing system (FMS) is a highly integrated manufacturing system in which there is some amount of flexibility that allows the system to react in case of changes, whether predicted or unpredicted. Automated guided vehicles (AGVs) are suitable for FMSs because they provide flexibility, adjustability and the connection of processing subsystems by handling raw materials, sub-assemblies or finished products. The static level of autonomy granted to AGVs affects their flexibility in dealing with perturbations, efficiency and the contribution to global performance. This paper presents a semi-heterarchical architecture to AGVs’ autonomy control to mitigate perturbations of FMS and increase their overall performance. This approach is based on the semi-hierarchical architecture between AGVs using belief-desired-intention BDI model for decision-making under normal and disturbance scenarios. The effectiveness of the proposed approach is demonstrated via a case study. We conclude that adjustable autonomy results in better performance than the classic static version.
机译:灵活的制造系统(FMS)是一种高度集成的制造系统,其中存在一定程度的灵活性,允许系统在发生变化的情况下反应,无论是预测还是未预测。自动化导向车辆(AGV)适用于FMSS,因为它们通过处理原材料,子组件或成品来提供灵活性,可调节性和处理子系统的连接。授予AGV的静态自身自主权影响他们在处理扰动,效率和对全球性能的贡献方面的灵活性。本文介绍了AGVS自主控制的半同架构,以减轻FMS的扰动并提高整体性能。这种方法基于AGVS之间的半层级架构,使用信念期望的意图BDI模型进行正常和干扰方案决策。通过案例研究证明了所提出的方法的有效性。我们得出结论,可调节的自主性导致比经典静态版本更好的性能。

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