保护网络物理系统的设计方法

M. A. Faruque, F. Regazzoni, M. Pajic
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引用次数: 32

摘要

在大多数情况下,网络物理系统(CPS)对安全和任务至关重要。用于保护嵌入式系统的标准设计技术不适合CPS,因为后者的计算和通信预算有限。此外,感知数据的敏感性和驱动元件的存在进一步增加了CPS的安全性要求。为了解决这些问题,有必要提供新的设计方法,在这些方法中,从整个设计流程的开始就考虑安全性,并以整体的方式进行处理。在本文中,我们将重点放在安全CPS的设计上,作为完整CPS设计过程的一部分,并提供了对控制组件的平台感知设计、设计方法和架构的新要求的见解。我们首先讨论了CPS的多学科建模、仿真、工具和软件合成挑战的方法。我们还提出了一个设计CPS安全控制系统的框架,同时考虑到底层计算和通信平台的特性。最后,我们描述了在CPS中使用的计算硬件中的安全挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design methodologies for securing cyber-physical systems
Cyber-Physical Systems (CPS) are in most cases safety- and mission-critical. Standard design techniques used for securing embedded systems are not suitable for CPS due to the restricted computation and communication budget available in the latter. In addition, the sensitivity of sensed data and the presence of actuation components further increase the security requirements of CPS. To address these issues, it is necessary to provide new design methods in which security is considered from the beginning of the whole design flow and addressed in a holistic way. In this paper, we focus on the design of secure CPS as part of the complete CPS design process, and provide insights into new requirements on platform-aware design of control components, design methodologies and architectures posed by CPS design. We start by discussing methods for the multi-disciplinary modeling, simulation, tools, and software synthesis challenges for CPS. We also present a framework for design of secure control systems for CPS, while taking into account properties of the underlying computation and communication platforms. Finally, we describe the security challenges in the computing hardware that is used in CPS.
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