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IntelliCAN: Attack-resilient Controller Area Network (CAN) for secure automobiles

机译:IntelliCAN:安全汽车的防攻击控制器局域网(CAN)

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Controller Area Network (CAN) is the main bus network that connects electronic control units in automobiles. Although CAN protocols have been revised to improve the vehicle safety, the security weaknesses of CAN have not been fully addressed. Security threats on automobiles might be from external wireless communication or from internal malicious CAN nodes mounted on the CAN bus. Despite of various threat sources, the security weakness of CAN is the root of security problems. Due to the limited computation power and storage capacity on each CAN node, there is a lack of hardware-efficient protection methods for the CAN system without losing the compatibility to CAN protocols. To save the cost and maintain the compatibility, we propose to exploit the built-in CAN fault confinement mechanism to detect the masquerade attacks originated from the malicious CAN devices on the CAN bus. Simulation results show that our method achieves the attack misdetection rate at the order of 10-5 and reduces the encryption latency by up to 68% over the complete frame encryption method.
机译:控制器局域网(CAN)是连接汽车电子控制单元的主要总线网络。尽管已对CAN协议进行了修订以提高车辆安全性,但CAN的安全性缺陷尚未得到完全解决。汽车上的安全威胁可能来自外部无线通信,也可能来自安装在CAN总线上的内部恶意CAN节点。尽管存在各种威胁源,但CAN的安全漏洞是安全问题的根源。由于每个CAN节点上的计算能力和存储容量有限,因此在不失去与CAN协议兼容性的情况下,缺乏针对CAN系统的硬件有效保护方法。为了节省成本并保持兼容性,我们建议利用内置的CAN故障限制机制来检测源自CAN总线上恶意CAN设备的伪装攻击。仿真结果表明,与完整的帧加密方法相比,该方法的攻击误检率达到10-5的数量级,并减少了68%的加密延迟。

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