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Deadlock avoidance algorithm for flexible manufacturing systems by calculating effective free space of circuits

机译:通过计算电路的有效自由空间来避免柔性制造系统的死锁算法

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Modern flexible manufacturing systems (FMS) are highly automated and flexible in which raw parts of various types are processed concurrently. Deadlock issue arises easily in these systems due to shared equipment usage and high production flexibility. It was indicated in Wysk et al. (Wysk, R., Yang, N. and Joshi, S., Detection of deadlocks in flexible manufacturing cells. IEEE Trans. Rob. Auto., 1991, 7, 853-859.) that when a manufacturing system is modelled by a digraph, existence of circuits in such a graph is a necessary condition for deadlock. Deadlock avoidance for systems with free choice in part routing has been well studied in the Petri net formalism, however, we have not found that it has been studied systematically in the digraph formalism. Because of choices introduced, part flow dynamics become much more complex. Based on our previous work Zhang et al. (Zhang, W., Judd, R.P. and Paul P., Evaluating order of circuits for deadlock avoidance in a flexible manufacturing system. Int. J. Prod. Res., 2006, 44, 5247-5259.), this paper presents a deadlock avoidance algorithm for FMS, which allows free choices in part routing by calculation of effective free space of circuits of the digraph model. The algorithm is highly permissive since the effective free space calculation captures more parts flow dynamics, especially when there exist multiple knots in the digraph model. And it runs in polynomial time once the set of circuits of the digraph is computed offline. Simulation results on selected examples are given.
机译:现代柔性制造系统(FMS)具有高度自动化和灵活性,可以同时处理各种类型的原始零件。由于共享设备的使用和高生产灵活性,在这些系统中容易出现死锁问题。 Wysk等人指出了这一点。 (Wysk,R.,Yang,N.和Joshi,S.,检测柔性制造单元中的死锁。IEEETrans。Rob。Auto。,1991,7,853-859。)有向图,在这样的图中存在电路是死锁的必要条件。在Petri网形式主义中对在零件路由中具有自由选择的系统的死锁避免进行了很好的研究,但是,我们还没有发现在有向图形式主义中对此进行了系统的研究。由于引入了选择,因此部分流动动力学变得更加复杂。根据我们之前的工作,Zhang等人。 (Zhang,W.,Judd,RP and Paul P.,评估在柔性制造系统中避免死锁的电路顺序。Int。J. Prod。Res。,2006,44,5247-5259。)用于FMS的避免死锁算法,该算法可通过计算有向图模型的电路有效有效空间来自由选择零件布线。该算法是高度允许的,因为有效的自由空间计算可捕获更多的零件流动力学,尤其是当有向图模型中存在多个结时。一旦离线计算该有向图的电路集,它就会以多项式时间运行。给出了所选示例的仿真结果。

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