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General mixed integer programming-based liveness test for system of sequential systems with shared resources nets

机译:具有共享资源网的顺序系统中基于混合整数编程的通用活动性测试

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For a system of sequential systems with shared resources (S4R), a typical class of Petri net models of flexible manufacturing systems (FMS), current deadly marked siphon (DMS) detection approaches based on mixed integer programming (MIP) cannot detect siphons that cause livelocks in systems. Thus a deadlock-free system cannot be further controlled. Moreover, most of these methods cannot obtain a minimal DMS directly. This study proposes the concept of extended DMS (EDMS) on the basis of max''-controllability condition of siphons. Accordingly, a more general MIP testing approach that can detect the minimal EDMS that cause deadlocks or livelocks in S4R is presented to lay foundations for further analysis and control. The authors conclude that an S4R is live if there is no feasible solution to this new MIP test. Compared with the existing methods, the proposed one is more general and powerful. Experimental studies are used to illustrate it.
机译:对于具有共享资源(S4R)的顺序系统的系统(一类典型的柔性制造系统(FMS)的Petri网模型),当前基于混合整数编程(MIP)的致命标记虹吸管(DMS)检测方法无法检测到导致以下情况的虹吸管系统中的活锁。因此,无法进一步控制无死锁的系统。而且,大多数这些方法不能直接获得最小的DMS。这项研究基于虹吸管的最大''可控性条件提出了扩展DMS(EDMS)的概念。因此,提出了一种更通用的MIP测试方法,该方法可以检测导致S4R死锁或活锁的最小EDMS,从而为进一步的分析和控制打下基础。作者得出的结论是,如果没有针对此新MIP测试的可行解决方案,则可以使用S4R。与现有方法相比,所提出的方法更加通用和强大。实验研究用于说明这一点。

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  • 来源
    《Control Theory & Applications, IET》 |2010年第12期|p.2867-2878|共12页
  • 作者

    Liu G.; Li Z.;

  • 作者单位

    School of Electronical and Mechanical Engineering, Xidian University;

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