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Petri net based control for the dynamic scheduling of a flexible manufacturing cell

机译:基于Petri网的柔性制造单元动态调度控制

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Deals with the dynamic scheduling of flexible manufacturing systems. The control hierarchy considers two levels. A higher level that provides parts and deadlines to the FMS and a lower (local) control that determines the sequence of the operations within the FMS. The local control uses as inputs a Petri net model of the system and of each of the products to be manufactured. The models of the products are deterministic place timed, and describe the possible sequences of operations to be executed in the cell. Assigning the time to the places allows a more compact representation of the system. The model of the system only describes its logical structure. The control, in order to determine the next steps to be carried out by the system, calculates the useful and possible work in the system by mapping the enabled transitions in the products into the system net. In order to avoid deadlocks the control must look ahead several transitions and at the same time the cost function is calculated which is used to select the transition to be fired. At this point, simulation results of a small FMS: three machines, one robot and three products are presented using Mathematica, although the system is capable of handling any number of them.
机译:处理柔性制造系统的动态调度。控制层次结构考虑两个级别。较高的级别为FMS提供了零件和截止日期,而较低的(本地)控件确定了FMS内的操作顺序。本地控件将系统和每个要生产的产品的Petri网模型用作输入。产品的模型是确定性的放置时间,并描述了将在单元中执行的操作的可能顺序。将时间分配给地点可以更紧凑地表示系统。系统模型仅描述其逻辑结构。为了确定系统要执行的下一步骤,该控件通过将产品中已启用的转换映射到系统网络中来计算系统中有用的工作和可能的工作。为了避免死锁,控件必须预见几个转换,同时计算成本函数,该函数用于选择要触发的转换。在这一点上,使用Mathematica展示了一个小型FMS的仿真结果:三台机器,一台机器人和三种产品,尽管该系统能够处理任意数量的FMS。

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