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信息物理系统中的人工智能。

Artificial intelligence in cyber physical systems.

作者信息

Radanliev Petar, De Roure David, Van Kleek Max, Santos Omar, Ani Uchenna

机构信息

Engineering Science Department, Oxford e-Research Centre, University of Oxford, 7 Keble Road, Oxford, OX1 3QG England, UK.

Department of Computer Science, University of Oxford, Oxford, England, UK.

出版信息

AI Soc. 2021;36(3):783-796. doi: 10.1007/s00146-020-01049-0. Epub 2020 Aug 27.

Abstract

This article conducts a literature review of current and future challenges in the use of artificial intelligence (AI) in cyber physical systems. The literature review is focused on identifying a conceptual framework for increasing resilience with AI through automation supporting both, a technical and human level. The methodology applied resembled a literature review and taxonomic analysis of complex internet of things (IoT) interconnected and coupled cyber physical systems. There is an increased attention on propositions on models, infrastructures and frameworks of IoT in both academic and technical papers. These reports and publications frequently represent a juxtaposition of other related systems and technologies (e.g. Industrial Internet of Things, Cyber Physical Systems, Industry 4.0 etc.). We review academic and industry papers published between 2010 and 2020. The results determine a new hierarchical cascading conceptual framework for analysing the evolution of AI decision-making in cyber physical systems. We argue that such evolution is because of the increased integration of connected devices (IoT) in cyber physical systems. To support this argument, taxonomic methodology is adapted and applied for transparency and justifications of concepts selection decisions through building summary maps that are applied for designing the hierarchical cascading conceptual framework.

摘要

本文对网络物理系统中使用人工智能(AI)的当前及未来挑战进行了文献综述。该文献综述聚焦于确定一个概念框架,通过支持技术和人类层面的自动化来提高人工智能的恢复力。所应用的方法类似于对复杂的物联网(IoT)互联和耦合网络物理系统的文献综述及分类分析。学术和技术论文中对物联网的模型、基础设施和框架的提议关注度日益提高。这些报告和出版物经常将物联网与其他相关系统和技术(如工业物联网、网络物理系统、工业4.0等)并列呈现。我们回顾了2010年至2020年间发表的学术和行业论文。结果确定了一个新的分层级联概念框架,用于分析网络物理系统中人工智能决策的演变。我们认为这种演变是由于网络物理系统中连接设备(物联网)的集成度提高所致。为支持这一论点,采用了分类方法,并通过构建用于设计分层级联概念框架的总结图,对概念选择决策的透明度和合理性进行应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc89/7451704/f2a24641ce26/146_2020_1049_Fig1_HTML.jpg

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