The safety and security of the passengers in vehicles in the face of cyber attacks is a key element in the automotive industry, especially with the emergence of the Advanced Driver Assistance Systems (ADAS) and the vast improvement in Autonomous Vehicles (AVs). Such platforms use various sensors, including cameras, LiDAR and mmWave radar. These sensors themselves may present a potential security hazard if exploited by an attacker. In this paper we propose a system to attack an automotive FMCW mmWave radar, that uses fast chirp modulation. Using a single rogue radar, our attack system is capable of spoofing the distance and velocity measured by the victim vehicle simultaneously, presenting phantom measurements coherent with the laws of physics governing vehicle motion. The attacking radar controls the delay in order to spoof its distance, and uses phase compensation and control in order to spoof its velocity. After developing the attack theory, we demonstrate the spoofing attack by building a proof-of-concept hardware-based system, using a Software Defined Radio. We successfully demonstrate two real world scenarios in which the victim radar is spoofed to detect either a phantom emergency stop or a phantom acceleration, while measuring coherent range and velocity. We also discuss several countermeasures to the attack, in order to propose ways to mitigate the described attack.
翻译:面对网络攻击,车辆乘客在汽车业中的安全和保障是汽车业的一个关键因素,特别是随着先进的助运系统(ADAS)的出现和机动车辆(AVs)的大规模改进,这种平台使用各种传感器,包括摄像机、激光雷达和毫米Wave雷达,这些传感器本身可能具有潜在的安全危险,如果被攻击者利用的话,这些传感器本身可能具有潜在的安全危险。在本文中,我们提议建立一个系统,攻击汽车的FMCW mm Wave雷达,该雷达使用快速调制。我们使用一个单一的无赖雷达,我们的攻击系统能够掩盖受害者车辆同时测量的距离和速度,提出符合车辆运动物理法的幻影测量。攻击雷达控制延迟,以便移动其距离,并使用阶段补偿和控制,以达到其速度。在研拟攻击理论后,我们通过建立一个有证据的硬件基础系统,用软件定义的无线电台,展示了这种攻击的打击。我们成功地展示了两种真实的世界情景,其中受害者雷达是同时测量距离和速度的,根据物理定法进行测量,以减缓攻击速度,同时测量加速和测测测算。