Designing reliable cyber-physical systems overview associated to the special session at FDL'16

Gadi Aleksandrowicz, E. Arbel, R. Bloem, Timon D. ter Braak, S. Devadze, G. Fey, M. Jenihhin, A. Jutman, H. Kerkhoff, Robert Könighofer, Jan Malburg, Shiri Moran, J. Raik, G. Rauwerda, Heinz Riener, Franz Röck, K. Shibin, K. Sunesen, J. Wan, Yong Zhao
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引用次数: 1

Abstract

CPS, that consist of a cyber part – a computing system – and a physical part – the system in the physical environment – as well as the respective interfaces between those parts, are omnipresent in our daily lives. The application in the physical environment drives the overall requirements that must be respected when designing the computing system. Here, reliability is a core aspect where some of the most pressing design challenges are: monitoring failures throughout the computing system, determining the impact of failures on the application constraints, and ensuring correctness of the computing system with respect to application-driven requirements rooted in the physical environment. This paper provides an overview of techniques discussed in the special session to tackle these challenges throughout the stack of layers of the computing system while tightly coupling the design methodology to the physical requirements.
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设计可靠的网络物理系统概述与FDL'16特别会议相关
CPS由网络部分(计算系统)和物理部分(物理环境中的系统)以及这两个部分之间的接口组成,在我们的日常生活中无处不在。物理环境中的应用程序驱动了在设计计算系统时必须考虑的总体需求。在这里,可靠性是一个核心方面,其中一些最紧迫的设计挑战是:监视整个计算系统的故障,确定故障对应用程序约束的影响,并确保计算系统相对于植根于物理环境的应用程序驱动的需求的正确性。本文概述了在特别会议中讨论的技术,以解决整个计算系统层堆栈中的这些挑战,同时将设计方法与物理需求紧密耦合。
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