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Reconfigurability of behavioural specifications for manufacturing systems

机译:制造系统行为规范的重新分辨性

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Reconfigurable manufacturing systems (RMS) support flexibility in the product variety and the configuration of the manufacturing system itself in order to enable quick adjustments to new products and production requirements. As a consequence, an essential feature of RMS is their ability to rapidly modify the control strategy during run-time. In this paper, the particular problem of changing the specified operation of a RMS, whose logical behaviour is modelled as a finite state automaton, is addressed. The notion of reconfigurability of specifications (RoS) is introduced and it is shown that the stated reconfiguration problem can be formulated as a controlled language convergence problem. In addition, algorithms for the verification of RoS and the construction of a reconfiguration supervisor are proposed. The supervisor is realised in a modular way which facilitates the extension by new configurations. Finally, it is shown that a supremal nonblocking and controllable strict subautomaton of the plant automaton that fulfils RoS exists in case RoS is violated for the plant automaton itself and an algorithm for the computation of this strict subautomaton is presented. The developed concepts and results are illustrated by a manufacturing cell example.
机译:可重新配置的制造系统(RMS)支持产品品种的灵活性和制造系统本身的配置,以便能够快速调整新产品和生产要求。因此,RMS的基本特征是他们在运行时迅速修改控制策略的能力。在本文中,解决了改变RMS指定操作的特定问题,其逻辑行为被建模为有限状态自动机。介绍了规范的重新配置性(ROS)的概念,并表明该重新配置问题可以作为受控语言融合问题配制。另外,提出了用于验证ROS的算法和重新配置监督员的构建。主管以模块化方式实现,这促进了新配置的扩展。最后,表明,在植物自动机本身侵犯ROS的情况下,存在满足ROS的植物自动机的最正度的非阻塞和可控严格的亚utomaton,并提出了一种计算这种严格的子仿植物的计算算法。开发的概念和结果由制造单元示例说明。

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