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Local and global deadlock prevention policies for resource allocation systems using partially generated reachability graphs

机译:使用部分生成的可达性图的资源分配系统的本地和全局死锁预防策略

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This paper considers the deadlock prevention problem for a class of conjunctive/disjunctive resource allocation systems (C/D-RAS) which cover relatively general cases in which the multiple resource acquisitions and flexible routings are allowed. First, an improved siphon-based liveness characterization for the Petri nets modeling C/D-RAS is proposed. Subsequently, this characterization facilitates the utilization of a mixed integer programming (MIP) based deadlock prevention policy that can well avoid the explicit enumeration of both siphons and the reachable states. The resulting policy is implemented by an iterative algorithm each step of which is characterized as an MIP formulation in conjunction with both a bad marking detection and a feedback control operation. Finally, the deadlock prevention policy developed in this paper is, respectively, characterized by the local and global ones so as to realize a trade-off between the behavior permissiveness and the structural simplicity of the supervisor. Both the theoretical and experimental results validate the effectiveness and efficiency of such an approach.
机译:本文考虑一类混合/分离资源分配系统(C / D-RAS)的死锁预防问题,该系统涵盖了允许多资源获取和灵活路由的相对一般情况。首先,针对Petri网建模C / D-RAS,提出了一种改进的基于虹吸的活度表征。随后,此特征有助于基于混合整数编程(MIP)的防死锁策略的利用,该策略可以很好地避免虹吸和可到达状态的显式枚举。最终的策略是通过迭代算法来实现的,该算法的每个步骤都结合了不良标记检测和反馈控制操作,以MIP公式化为特征。最后,本文制定的僵局预防策略分别以局部和全局策略为特征,以实现行为允许性和监督者结构简化之间的权衡。理论和实验结果均证实了这种方法的有效性和效率。

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