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A Preferment Platform for Implementing Security Mechanism for Automotive Can Bus

机译:实施汽车罐车安全机制的优选平台

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The design of cryptographic mechanisms in automotive systems has been a major focus over thelast ten years as the increase of cyber attacks against in-vehicle networks. The integration ofthese protocols into CAN bus networks is an efficient solution for leaving security level, butfeatures of CAN bus make the performance requirements within cryptographic schemes verychallenging. In the literature most of academic researches focused on designing securitymechanisms for the CAN bus. Yet, very few research proposals are interested in analyzingperformances requirements by using cryptographic protocols. In this paper, we investigateeffects of implementing cryptographic approaches on performance by proposing an analysismethodology for implementing cryptographic approach in CAN bus communication andmeasuring real-time performances. Next, we propose our system which presents a tool fordetermining the impact of implementing of cryptographic solutions. On the other hand we haveproposed an intrusion detection system using the same platform. Our tool allows theimplementation of any security strategy as well as the real-time performance analysis of CANnetwork.
机译:在过去的十年中,随着针对车载网络的网络攻击的增加,汽车系统中的密码机制的设计成为了主要关注点。这些协议集成到CAN总线网络中是保持安全级别的有效解决方案,但是CAN总线的功能使密码方案中的性能要求极具挑战性。在文献中,大多数学术研究都集中在为CAN总线设计安全机制上。然而,很少有研究提案对使用密码协议分析性能要求感兴趣。在本文中,我们通过提出一种在CAN总线通信中实施加密方法并测量实时性能的分析方法,研究了实施加密方法对性能的影响。接下来,我们提出我们的系统,该系统提供了一种确定加密解决方案实施影响的工具。另一方面,我们提出了使用相同平台的入侵检测系统。我们的工具允许实施任何安全策略以及CANnetwork的实时性能分析。

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