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TIMED PETRI NETS FOR TEXTILE BATCH PLANNING UNDER VARYING INPUT CHARACTERISTICS

机译:可变输入特性下用于纺织品批量计划的定时Petri网

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Batch planning and scheduling of textile dyeing and finishing operations, is a complex problem, particularly under non homogenous input and highly varying operating requirements. Here the focus is on the conceptual planning stage during which valid approximation-based methods are needed. This paper introduces a decomposition method, directly derived from Timed Petri Nets (TPN) theories, to calculate the expected utilization of the processing equipment and to derive simple operational decision rules leading to maximum system productivity at steady state, for given characteristics of the textile input mix and its required routing through the manufacturing system. The decomposed TPN model enables a quick calculation of the resource expected utilization at steady state thus providing a stick yard against which to verify its long run simulation based utilization estimate.
机译:纺织品染色和整理操作的批次计划和调度是一个复杂的问题,尤其是在非均匀输入和高度变化的操作要求下。这里的重点是概念规划阶段,在此阶段需要有效的基于近似的方法。本文介绍了一种直接从定时Petri网(TPN)理论推导的分解方法,用于计算处理设备的预期利用率,并得出简单的操作决策规则,从而在给定的纺织品输入特性下达到稳态时的最大系统生产率。混合及其在制造系统中所需的布线。分解后的TPN模型可以快速计算稳定状态下的资源预期利用率,从而提供一个可靠的标准,以验证其长期基于模拟的利用率估算。

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