Simulation-Based Optimization for the Design of Discrete Event Systems Modeled by Parametric Petri Nets

Juan Ignacio Latorre, E. Macías, M. P. Parte
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引用次数: 11

Abstract

Many technological, industrial or economical systems are described by discrete event system (DES) models. The decision making processes that arise in the design and operation of this kind of systems can be afforded by means of algorithmic methodologies. A large range of approaches based on the simulation of the behavior of the system have been reported to answer this problem. Their main advantage consists of being applicable to most of the systems. An important drawback is the significant computational resources required to perform an exhaustive exploration of the state space due to the combinatorial explosion. A manual choice of a reduced set of configurations to be simulated can be improved by the use of parametric Petri nets and a metaheuristic search of the most promising ones. In this paper, a review of some definitions of parametric Petri net found in the literature is presented, as well as a definition for the general framework of stating optimization problems of both, the operation and the design of the model of the DES. Moreover, a methodology to obtain such a parametric Petri net, called compound Petri net, from an easier-to-obtain set of alternative Petri nets is proposed and an application example is given.
基于仿真的参数Petri网离散事件系统设计优化
许多技术、工业或经济系统是用离散事件系统(DES)模型来描述的。在这类系统的设计和操作中产生的决策过程可以通过算法方法来提供。许多基于系统行为模拟的方法已经被报道来回答这个问题。它们的主要优点是适用于大多数系统。一个重要的缺点是,由于组合爆炸,需要大量的计算资源来执行对状态空间的详尽探索。通过使用参数Petri网和对最有希望的配置进行元启发式搜索,可以改进人工选择要模拟的简化配置集。本文综述了文献中关于参数Petri网的一些定义,并给出了描述DES模型的运行和设计的优化问题的一般框架的定义。此外,提出了一种从一组更容易获得的备选Petri网中获得这种参数Petri网的方法,称为复合Petri网,并给出了一个应用实例。
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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