Model-based simulation and threat analysis of in-vehicle networks

A. Lekidis, I. Barosan
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引用次数: 3

Abstract

Automotive systems are currently undergoing a rapid evolution through the integration of the Internet of Things (IoT) and Software Defined Networking (SDN) technologies. The main focus of this evolution is to improve the driving experience, including automated controls, intelligent navigation and safety systems. Moreover, the extremely rapid pace that such technologies are brought into the vehicles, necessitates the presence of adequate testing of new features to avoid operational errors. Apart from testing though, IoT and SDN technologies also widen the threat landscape of cyber-security risks due to the amount of connectivity interfaces that are nowadays exposed in vehicles. In this paper we present a new method, based on OMNET++, for testing new in-vehicle features and assessing security risks through network simulation. The method is demonstrated through a case-study on a Toyota Prius, whose network data are analyzed for the detection of anomalies caused from security threats or operational errors.
基于模型的车载网络仿真与威胁分析
通过物联网(IoT)和软件定义网络(SDN)技术的集成,汽车系统目前正在经历快速发展。这一演变的主要焦点是改善驾驶体验,包括自动控制、智能导航和安全系统。此外,这些技术被引入车辆的速度极快,有必要对新功能进行充分的测试,以避免操作错误。除了测试之外,物联网和SDN技术也扩大了网络安全风险的威胁范围,因为现在车辆中暴露了大量的连接接口。本文提出了一种基于omnet++的网络仿真测试车载新功能和安全风险评估的新方法。以丰田普锐斯为例,分析其网络数据,以检测安全威胁或操作错误导致的异常。
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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