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首页> 外文期刊>IEEE Transactions on Systems, Man, and Cybernetics >Adaptive design of Petri net controllers for error recovery in automated manufacturing systems
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Adaptive design of Petri net controllers for error recovery in automated manufacturing systems

机译:Petri网控制器的自适应设计,用于自动化制造系统中的错误恢复

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The concept of Petri net controllers is extended to include automatic error recovery and adaptive design. In the Petri net controller considered, a place that represents an operation or a state of a machine is attached to two functions and a constant so that it can represent a system working with both normal states and abnormal states. In addition, it is possible to detect an error with the controller using watchdog timers. Four basic Petri net augmentation methods for error recovery are investigated: input conditioning, alternate path, feedback error recovery, and forward error recovery. The authors demonstrate that when these methods are used to augment the Petri net controller, some important properties of the controller are guaranteed to be preserved. These properties include boundedness or safety, liveness, reversibility and the essentially decision-free property. An example of augmentations for error recovery for a piston insertion cell with two robots is given.
机译:Petri网控制器的概念已扩展到包括自动错误恢复和自适应设计。在所考虑的Petri网控制器中,代表机器的操作或状态的位置附加有两个功能和一个常数,以便它可以代表同时处于正常状态和异常状态的系统。另外,可以使用看门狗定时器检测控制器的错误。研究了用于错误恢复的四种基本Petri网增强方法:输入条件,备用路径,反馈错误恢复和前向错误恢复。作者证明,当使用这些方法来扩展Petri网控制器时,可以保证控制器的某些重要属性得以保留。这些属性包括边界或安全性,活动性,可逆性和基本上无决策的属性。给出了具有两个机器人的活塞插入单元的错误恢复的增强示例。

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