Optimization of manufacturing systems modelled by timed Petri nets

A. D. Febbraro, D. Giglio, R. Minciardi, S. Sacone
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引用次数: 1

Abstract

Integer timed Petri nets (ITPN) are applied in this work to model automated manufacturing systems, where several products are obtained via sequences of operations executed by different machines. In such a model the system state is represented by the joint information consisting of the net marking and of the residual firing times of timed transitions. On this basis, the state equations representing the system dynamics can be written. With reference to this model, it is possible to build the system state diagram, where two main classes of states can be distinguished, named tangible and vanishing, after the terms introduced for GSPN. Then, a specific performance optimization problem is addressed for which the cost to be optimized can only be associated with the permanence of the system in tangible states.
基于定时Petri网的制造系统优化
整数时间Petri网(ITPN)在这项工作中应用于自动化制造系统的建模,其中通过不同机器执行的操作序列获得几种产品。在该模型中,系统状态由由网络标记和定时转换的剩余发射时间组成的联合信息表示。在此基础上,可以写出表示系统动力学的状态方程。参考此模型,可以构建系统状态图,在为GSPN引入术语之后,可以区分两类主要状态,分别为有形状态和消失状态。然后,解决一个特定的性能优化问题,其中要优化的成本只能与系统在有形状态下的持久性相关联。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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