保护卫星系统免受网络攻击的数字双运行时验证框架

Zhé Hóu, Qinyi Li, Ernest Foo, J. Dong, Paulo de Souza
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引用次数: 1

摘要

本文提出了一个框架的概念化,该框架将数字孪生与运行时验证相结合,并将该技术应用于卫星的安全监测和验证。我们将重点讨论空间任务和卫星所需的特殊考虑因素,并讨论如何在此类应用中开发数字双胞胎,以及如何同步双胞胎的状态。特别是,我们提出了状态同步方法,以确保卫星与地面上的数字孪生体之间安全有效的远程通信。在此基础上,我们为数字孪生开发了一个运行时验证引擎,可以验证多种时态逻辑语言的属性。最后,我们提出了开发一个完全验证的卫星数字孪生系统作为未来工作的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Digital Twin Runtime Verification Framework for Protecting Satellites Systems from Cyber Attacks
This paper presents the conceptualisation of a framework that combines digital twins with runtime verification and applies the techniques in the context of security monitoring and verification for satellites. We focus on special considerations needed for space missions and satellites, and we discuss how digital twins in such applications can be developed and how the states of the twins should be synchronised. In particular, we present state synchronisation methods to ensure secure and efficient long-distance communication between the satellite and its digital twin on the ground. Building on top of this, we develop a runtime verification engine for the digital twin that can verify properties in multiple temporal logic languages. We end the paper with our proposal to develop a fully verified satellite digital twin system as future work.
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