Edge Computing for Cyber-physical Systems: A Systematic Mapping Study Emphasizing Trustworthiness

J. Sánchez, Nils Jörgensen, Martin Törngren, R. Inam, Andrii Berezovskyi, Lei Feng, E. Fersman, Muhammad Rusyadi Ramli, Kaige Tan
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引用次数: 11

Abstract

Edge computing is projected to have profound implications in the coming decades, proposed to provide solutions for applications such as augmented reality, predictive functionalities, and collaborative Cyber-Physical Systems (CPS). For such applications, edge computing addresses the new computational needs, as well as privacy, availability, and real-time constraints, by providing local high-performance computing capabilities to deal with the limitations and constraints of cloud and embedded systems. Edge computing is today driven by strong market forces stemming from IT/cloud, telecom, and networking—with corresponding multiple interpretations of “edge computing” (e.g., device edge, network edge, distributed cloud). Considering the strong drivers for edge computing and the relative novelty of the field, it becomes important to understand the specific requirements and characteristics of edge-based CPS, and to ensure that research is guided adequately, e.g., avoiding specific gaps. Our interests lie in the applications of edge computing as part of CPS, where several properties (or attributes) of trustworthiness, including safety, security, and predictability/availability, are of particular concern, each facing challenges for the introduction of edge-based CPS. We present the results of a systematic mapping study, a kind of systematic literature survey, investigating the use of edge computing for CPS with a special emphasis on trustworthiness. The main contributions of this study are a detailed description of the current research efforts in edge-based CPS and the identification and discussion of trends and research gaps. The results show that the main body of research in edge-based CPS only to a very limited extent consider key attributes of system trustworthiness, despite many efforts referring to critical CPS and applications like intelligent transportation. More research and industrial efforts will be needed on aspects of trustworthiness of future edge-based CPS including their experimental evaluation. Such research needs to consider the multiple interrelated attributes of trustworthiness including safety, security, and predictability, and new methodologies and architectures to address them. It is further important to provide bridges and collaboration between edge computing and CPS disciplines.
网络物理系统的边缘计算:强调可信度的系统映射研究
边缘计算预计将在未来几十年产生深远的影响,为增强现实、预测功能和协作网络物理系统(CPS)等应用提供解决方案。对于这些应用程序,边缘计算通过提供本地高性能计算能力来处理云和嵌入式系统的限制和约束,解决了新的计算需求,以及隐私、可用性和实时限制。今天,边缘计算是由来自IT/云、电信和网络的强大市场力量驱动的,对“边缘计算”有相应的多种解释(例如,设备边缘、网络边缘、分布式云)。考虑到边缘计算的强大驱动因素和该领域的相对新颖性,了解基于边缘的CPS的具体要求和特征,并确保研究得到充分指导变得非常重要,例如,避免特定的差距。我们的兴趣在于边缘计算作为CPS的一部分的应用,其中几个值得信赖的属性(或属性),包括安全性,安全性和可预测性/可用性,是特别关注的,每个都面临着引入基于边缘的CPS的挑战。我们提出了一项系统测绘研究的结果,这是一种系统的文献调查,研究了边缘计算在CPS中的使用,特别强调了可信度。本研究的主要贡献是详细描述了基于边缘的CPS的当前研究成果,并确定和讨论了趋势和研究差距。结果表明,尽管许多研究涉及关键CPS和智能交通等应用,但基于边缘的CPS的研究主体仅在非常有限的程度上考虑了系统可信度的关键属性。未来基于边缘的CPS的可信度方面需要更多的研究和工业努力,包括实验评估。此类研究需要考虑可信性的多个相互关联的属性,包括安全性、安全性和可预测性,以及解决这些属性的新方法和体系结构。在边缘计算和CPS学科之间提供桥梁和协作也很重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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