Assessment of safety and security of system architectures for cyberphysical systems

N. Subramanian, J. Zalewski
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引用次数: 13

Abstract

Cyberphysical systems (CPS) are an integral part of modern societies since most of the critical infrastructure is controlled by these systems. CPS incorporate computer-based and network-based technologies for monitoring and control of physical processes. Two critically important properties of CPS are safety and security. It is widely accepted that properties such as safety and security need to be considered at the system design phase itself, especially at the architectural level wherein such properties are embedded in the final system. However, safety and security are inter-related and there seems to be a lack of techniques that consider both of them together. The NFR Approach, where NFR stands for Non-Functional Requirements, is a technique that allows simultaneous evaluation of both safety and security at the architectural level. In this paper we apply the NFR Approach to evaluate safety and security properties of an example CPS, namely, an oil-pipeline control system. We conclude that NFR Approach provides practical results that can be used by designers and developers to create safe and secure CPS.
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网络物理系统系统架构的安全性评估
网络物理系统(CPS)是现代社会不可或缺的一部分,因为大多数关键基础设施都由这些系统控制。CPS结合了基于计算机和基于网络的技术来监测和控制物理过程。CPS的两个至关重要的特性是安全性和安全性。人们普遍认为,需要在系统设计阶段本身考虑安全性等属性,特别是在将这些属性嵌入最终系统的架构级别。然而,安全和安保是相互关联的,似乎缺乏将两者结合起来考虑的技术。NFR方法(其中NFR代表非功能需求)是一种允许在体系结构级别同时评估安全性和安全性的技术。本文将NFR方法应用于实例CPS即输油管道控制系统的安全性能评价。我们得出结论,NFR方法提供了实用的结果,可供设计人员和开发人员使用,以创建安全可靠的CPS。
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