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Robust authentication for automotive control networks through covert channels

机译:通过隐蔽通道对汽车控制网络的强大认证

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摘要

Automotive control networks offer little resistance against security threats that come with the long-range connectivity in modern cars. Remote attacks that undermine the safety of vehicles have been shown to be practical. A range of security mechanisms have been proposed to harden resource-constrained embedded microcontrollers against malicious interference, including cryptographic protocols that establish the authenticity of in-vehicle message exchange. However, authenticated communication comes with repercussions on deployability and vehicle safety in terms of reliability, real-time compliance, backwards compatibility, and bandwidth and resource use. In this article we investigate benign, defencive uses of covert channels to implement and support vehicular message authentication mechanisms as a transparent, resource-conserving approach to automotive network security. We provide the first comprehensive evaluation of covert channels in Controller Area Networks (CAN) with respect to the attainable bandwidth and reliability of covert communication. Our analysis identifies timing-based covert channels as candidates to design a complementary nonce synchronisation channel that can enhance robustness against message loss in existing authentication schemes. We practically implement and evaluate this design on top of an open-source authenticated CAN communication library, showing that covert timing channels can improve communication robustness in benign circumstances, while not reducing the security guarantees of the underlying authentication primitives when under attack.
机译:汽车控制网络对现代汽车远程连接的安全威胁提供了很小的抵抗力。破坏车辆安全的远程攻击已被证明是实用的。已经提出了一系列安全机制来硬化资源受限的嵌入式微控制器免受恶意干扰,包括建立车载信息交换的真实性的加密协议。但是,在可靠性,实时合规性,向后兼容性和带宽和资源使用方面,经过身份验证的通信随着在可靠性,实时合规性,向后兼容性和带宽和资源使用方面的部署和车辆安全性。在本文中,我们调查良好的智能频道的良性,消防频道来实现和支持车辆消息认证机制作为汽车网络安全的透明,资源节省方法。我们提供了对控制器区域网络(CAN)中的封闭通道的第一次综合评估,了解秘密通信的可靠带宽和可靠性。我们的分析将基于时序的隐蔽频道识别为设计互补的Nonce同步信道,该信道可以增强现有认证方案中对消息丢失的鲁棒性。我们实际上在开源经过身份验证的CAN通信库之上实施和评估该设计,显示隐蔽定时通道可以提高良性环境中的通信稳健性,同时不会在攻击时减少底层认证原语的安全保证。

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