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Design of Deadlock Prevention Supervisor in Waterway with Multiple Locks and Canals

机译:航道多锁运河防死监督器设计。

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摘要

To avoid conflict and deadlock states in waterway with multiple locks and canals, a computer based traffic management system with proper control policy must be applied. The paper proposes a formal method for design of deadlock prevention supervisor by using discrete event theory, multiple reentrant flowlines class of Petri net and P-invariants control places calculation. By using and/or matrix algebra, authors analyze the structural characteristics of Petri net in order to find first and second level deadlocks. First level deadlocks are prevented by maintaining the number of vessels in the critical subsystems below the number of vessels in the critical circuits. A method for second level deadlock prevention, which is based on P-invariants, ensures that the key resources would not be the last available resources in the system. Functionality of the supervisor is verified by a computer simulation using Matlab software with Petri net toolbox and P-timed Petri net model of waterway.
机译:为了避免在具有多个锁和运河的水道中发生冲突和死锁状态,必须使用具有适当控制策略的基于计算机的交通管理系统。利用离散事件理论,Petri网的多个可重入流水线类和P不变控制位计算,提出了一种防止死锁监控器的形式化方法。通过使用和/或矩阵代数,作者分析Petri网的结构特征,以便找到第一级和第二级死锁。通过将关键子系统中的容器数保持在关键回路中的容器数以下,可以防止出现第一级死锁。一种基于P不变量的二级死锁预防方法,可确保关键资源不会成为系统中的最后可用资源。监督员的功能通过使用Matlab软件与Petri网工具箱和P定时Petri网模型进行计算机仿真来验证。

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