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Joint approach to design and control of process flows to avoid deadlocks in flexible production systems

机译:设计和控制过程流动的联合方法,以避免柔性生产系统中的死锁

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In the paper we develop a discrete dynamic model of concurrent cyclic processes and state two formal decision problems concerning testing the realizability of such system at its design phase and testing the safety (with respect to deadlocks) of control decisions undertaken on-line. We prove the NP- completeness of the problems and point out that such complexity clearly hinders a practical application of the optimal (i.e. the least-restrictive) approach proposed. Thus, we discuss a pragmatic solution for deadlock handling being a compromise between the restriction level of the algorithms required and their computational time-complexity. We introduce a satisfactory condition for realizability of the system and prove that in the cyclic systems which satisfy the condition we can employ deadlock avoidance algorithms developed for pipeline processes.
机译:在论文中,我们开发了一个分立的并发循环过程的动态模型,并说明了一个关于在其设计阶段测试这种系统的可实现性的两个正式决策问题,并测试在线上进行的控制决策的安全(关于死锁)。我们证明了问题的NP完整性,并指出这种复杂性显然阻碍了所提出的最佳方式的实际应用(即最不限制的)方法。因此,我们讨论死锁处理的语用解决方案是所需算法的限制水平与其计算时间复杂度之间的折衷。我们介绍了系统的可实现性的令人满意的条件,并证明了在满足条件的循环系统中,我们可以采用为管道过程开发的死锁避免算法。

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