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Modeling, analysis, synthesis, and performance evaluation of multioperational production systems with hybrid timed Petri nets

机译:具有混合定时Petri网的多业务生产系统的建模,分析,综合和性能评估

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Hybrid timed Petri nets (HTPNs) are derived to study random topology and complexity multioperational production systems where parts of one type follow the same route to produce a final product. Each production system is first decomposed into a fundamental multiproductive machine, multiassembly and multidisassembly modules, followed by derivation of their corresponding HTPN models. The overall system HTPN model is obtained via individual module synthesis, satisfying system constraints. Individual module and overall HTPN models nodes (places and transitions) are calculated. Individual module and overall system model invariants are derived mathematically. Performance and possible tradeoffs due to varying operational constraints (buffer capacity, work in process, machine utilization, backlog, etc.) are investigated through extensive simulations. Results show the applicability of the proposed methodology and justify its modeling power and generality.
机译:派生混合定时Petri网(HTPN)来研究随机拓扑和复杂性的多操作系统生产系统,其中一种类型的零件遵循相同的路线来生产最终产品。每个生产系统首先分解为基本的多生产机器,多组装和多组装模块,然后推导其相应的HTPN模型。整个系统HTPN模型是通过各个模块的综合获得的,满足了系统约束。计算各个模块和整个HTPN模型的节点(位置和过渡)。各个模块和整个系统模型的不变量是通过数学得出的。通过广泛的仿真研究了由于各种操作限制(缓冲区容量,在制品,机器利用率,积压等)导致的性能和可能的权衡。结果表明了该方法的适用性,并证明了其建模能力和通用性。

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