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A Time Petri Net With Relaxed Mixed Semantics for Schedulability Analysis of Flexible Manufacturing Systems

机译:具有轻松混合语义的时间培养的培养性,可柔性制造系统的调度分析

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Several semantics models are adopted by time Petri nets for different applications. Yet they have some limitations on schedulability analysis of flexible manufacturing systems. The scheduling scope of a strong semantics model is greatly limited because of the impact of strong timing requirements, perhaps keeping some optimal schedules out of the consideration. A weak semantics model cannot guarantee the scheduling timeliness as there lacks strong timing enforcement. A mixed semantics model cannot ensure that independent transitions with overlapping firing interval fire in an interleaving way, thus affecting the search for the optimal schedules. In this paper, we present a relaxed mixed semantics model for time Petri nets to address these problems by redefining the firability rules of transitions. In our model, the firability of a transition is determined by maximal concurrent sets containing the transition. This treatment not only extends the scheduling scope of TPN model greatly while avoiding the generation of invalid schedules, but also solves the problem of concurrent scheduling of independent transitions. A state class method is then proposed to support the verification and analysis of temporal properties. Finally, we apply the proposed model to schedulability analysis of a job shop scheduling problem, and compare the features of four semantics models.
机译:几种语义模型是由Time Petri网采用的不同应用程序。然而,它们对灵活制造系统的调度分析有一些局限性。强大的语义模型的调度范围由于强劲的时序要求的影响而受到极大的限制,可能会在考虑中保持一些最佳的时间表。弱语义模型不能保证调度及时性,因为缺乏强大的时机执法。混合语义模型不能确保以交错方式重叠的射击间隔火灾的独立转换,从而影响搜索最佳时间表。在本文中,我们通过重新定义过渡的威胁规则来提出一个放松的混合语义模型,以解决这些问题。在我们的模型中,转换的难忘是由包含转换的最大并发集决定的。这种处理不仅延长了TPN模型的调度范围,同时避免生成无效的时间表,而且还解决了独立转换的并发调度问题。然后提出了一种状态类方法以支持验证和分析时间特性。最后,我们将建议的模型应用于作业商店调度问题的调度分析,并比较四种语义模型的特征。

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