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Toward Self-Reconfiguration of Manufacturing Systems Using Automation Agents

机译:使用自动化代理实现制造系统的自我重配置

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The reconfiguration of control software is regarded as an important ability to enhance the effectiveness and efficiency in future manufacturing systems. Agent technology is considered as a promising approach to provide reconfiguration abilities, but existing work has been focused mainly on the reconfiguration of higher layers concerned with production scheduling and planning. In this paper, we present an automation agent architecture for controlling physical components that integrates “on the fly” reconfiguration abilities on the low-level layer. Our approach is combined with an ontological representation of the low-level functionality at the high-level control layer, which is able to reason and initiate reconfiguration processes to modify the low-level control (LLC). As current control systems are mostly based on standards and principles that do not support reconfiguration, leading to rigid control software architectures, we base our approach on the promising Standard IEC 61499 for the LLC, extended by an innovative reconfiguration infrastructure. We demonstrate this approach with a case study of a reconfiguration process that modifies the LLC functionality provided by the automation agent of a physical component. Thereby, we obtain the ability to support numerous different LLC configurations without increasing the LLC’s complexity. By applying our automation agent architecture, we enhance not only the flexibility of each component’s control software, but also achieve the precondition for reconfiguring the entire manufacturing system.
机译:控制软件的重新配置被认为是增强未来制造系统的有效性和效率的重要能力。代理技术被认为是提供重新配置功能的一种有前途的方法,但是现有的工作主要集中在与生产调度和计划有关的高层的重新配置上。在本文中,我们提出了一种用于控制物理组件的自动化代理体系结构,该体系结构在低层上集成了“即时”重新配置功能。我们的方法与高层控制层中低层功能的本体表示相结合,它能够推理并启动重新配置过程以修改低层控制(LLC)。由于当前的控制系统主要基于不支持重新配置的标准和原则,从而导致了僵化的控制软件体系结构,因此我们的方法基于有前途的LLC标准IEC 61499,并通过创新的重新配置基础架构进行了扩展。我们以重新配置过程的案例研究证明了这种方法,该过程修改了物理组件的自动化代理提供的LLC功能。从而,我们能够支持多种不同的LLC配置,而不会增加LLC的复杂性。通过应用我们的自动化代理架构,我们不仅增强了每个组件控制软件的灵活性,而且为重新配置整个制造系统提供了前提条件。

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