基于Petri网建模理论的柔性制造系统死锁问题的一种新颖且有利的恢复方法

Ching-Yun Tseng, Ju-Chin Chen, Yen-Liang Pan
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引用次数: 0

摘要

与过去的大规模生产工业不同,近几十年来,精密和自动化制造在生产领域得到了越来越广泛的接受。柔性制造系统(FMS)具有高度可变的生产率和灵活性,可以降低生产成本,提高生产效率。由于其资源共享,在某些情况下可能会出现意外的系统死锁。在对系统死锁控制的研究中,现有的很多文献都将死锁预防作为主要的控制方法,而死锁预防会阻碍资源的传输,并导致系统可达图的缩小。本文采用基于控制转移技术的死锁恢复策略作为直接控制策略。这种控制策略及其效益可以通过经典的简单顺序过程资源系统(S3PR)及其Petri网模型来证明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel and Advantageous Recovery Solution for Deadlock Problem of Flexible Manufacturing Systems Based on Petri Nets Modeling Theory
Instead of the mass production industry in the past, over these decades, precision and automatic manufacturing have become more and more widely accepted in the production area. With highly variable productivity and flexibility, Flexible Manufacturing Systems (FMS) can decrease production costs and increase efficiency. Due to its resource sharing, unexpected system deadlock may occur in some situations. In research on system deadlock control, lots of existing literature use deadlock prevention as the primary control method, while it could block resources transporting and downscale the system reachability graph. This paper adopts a deadlock recovery policy as the direct control strategy based on control transition technology. This kind of control strategy and its benefit could be demonstrated through classical systems of simple sequential processes with resources (S3PR) nets and their Petri nets model.
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