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首页> 外文期刊>IEEE transactions on systems, man and cybernetics. Part C, Applications and reviews >Deadlock Detection and Avoidance Strategies for Automated Storage and Retrieval Systems
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Deadlock Detection and Avoidance Strategies for Automated Storage and Retrieval Systems

机译:自动化存储和检索系统的死锁检测和避免策略

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摘要

This paper focuses on real-time control of automated storage and retrieval systems (AS/RSs) serviced by a rail-guided vehicle system, a widely used solution for material handling in warehouses. The generic multiproduct AS/RS is modeled as a timed discrete event dynamical system, whose state provides the information on the current interactions between users and resources. Moreover, we address the real-time controller that governs resource allocations and scheduling choices by enabling and inhibiting the system events in order to avoid collisions and deadlocks. To this aim, we characterize deadlock in AS/RSs and define two deadlock resolution strategies: a deadlock avoidance and a deadlock detection/recovery policy. The proposed deadlock formulation and characterization have a general validity and can be applied to single unit resource allocation systems where a subset of users may be regarded as resources of other users. We compare the proposed control policies for a large-scale AS/RS presented in the related literature by several discrete event simulation tests.
机译:本文着重于由导轨车辆系统提供服务的自动存储和检索系统(AS / RS)的实时控制,该系统是广泛用于仓库中物料搬运的解决方案。通用的多产品AS / RS被建模为定时离散事件动态系统,其状态提供有关用户和资源之间当前交互的信息。此外,我们致力于通过启用和禁止系统事件来避免冲突和死锁,从而控制资源分配和调度选择的实时控制器。为此,我们描述了AS / RS中的死锁,并定义了两种死锁解决策略:避免死锁和死锁检测/恢复策略。所提出的死锁公式化和表征具有一般有效性,并且可以应用于单个单元资源分配系统,在该系统中,用户的子集可以被视为其他用户的资源。我们通过几个离散事件模拟测试,比较了相关文献中提出的针对大型AS / RS的建议控制策略。

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