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Specifying autonomy in the Internet of Things: the autonomy model and notation

机译:在互联网上指定自主:自主模型和符号

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Driven by digitization in society and industry, automating behavior in an autonomous way substantially alters industrial value chains in the smart service world. As processes are enhanced with sensor and actuator technology, they become digitally interconnected and merge into an Internet of Things (IoT) to form cyber-physical systems. Using these automated systems, enterprises can improve the performance and quality of their operations. However, currently it is neither feasible nor reasonable to equip any machine with full autonomy when networking with other machines or people. It is necessary to specify rules for machine behavior that also determine an adequate degree of autonomy to realize the potential benefits of the IoT. Yet, there is a lack of methodologies and guidelines to support the design and implementation of machines as explicit autonomous agents such that many designs only consider autonomy implicitly. To address this research gap, we perform a comprehensive literature review to extract 12 requirements for the design of autonomous agents in the IoT. We introduce a set of constitutive characteristics for agents and introduce a classification framework for interactions in multi-agent systems. We integrate our findings by developing a conceptual modeling language consisting of a meta model and a notation that facilitates the specification and design of autonomous agents within the IoT as well as CPS: the autonomy model and notation. We illustrate and discuss the approach and its limitations.
机译:由社会和行业的数字化驱动,以自主方式自动化行为在智能服务世界中大大改变了工业价值链。随着通过传感器和执行器技术的增强过程,它们将数字互连并合并成用于形成网络物理系统的物质(IOT)。使用这些自动化系统,企业可以提高业务的性能和质量。然而,目前既不是可行的也不合理于与其他机器或人联网时装备完全自主的机器。有必要指定机器行为规则,这些规则还确定了足够的自主学习,以实现物联网的潜在益处。然而,缺乏方法论和准则,支持机器的设计和实施作为明确的自治代理,使得许多设计仅考虑隐含的自主。为了解决这一研究差距,我们对IOT中的自主代理设计提取了12个要求。我们为代理商介绍了一组本构特征,并为多智能体系中的交互引入了分类框架。我们通过开发由元模型组成的概念建模语言和促进物联网内的自主代理的规范和设计以及CPS:自治模型和符号的概念建模语言来整合我们的研究结果。我们说明并讨论了方法及其限制。

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