Wang Dong, Zhao Juan-Ying, Wang Ya-Chao, Zhou Liang-Jiang, Zhao Yi-Bo
National Key Laboratory of Microwave Imaging, Aerospace Information Research Institute, Chinese Academy of Sciences, Beijing, 100190, China.
Huzhou Institute of Zhejiang University, Huzhou, 313000, China.
Sci Rep. 2024 Sep 27;14(1):22058. doi: 10.1038/s41598-024-72804-2.
LiDAR systems that rely on classical signals are susceptible to intercept-and-recent spoofing attacks, where a target attempts to avoid detection. To address this vulnerability, we propose a quantum-secured LiDAR protocol that utilizes Gaussian modulated coherent states for both range determination and spoofing attack detection. By leveraging the Gaussian nature of the signals, the LiDAR system can accurately determine the range of the target through cross-correlation analysis. Additionally, by estimating the excess noise of the LiDAR system, the spoofing attack performed by the target can be detected, as it can introduce additional noise to the signals. We have developed a model for target ranging and security check, and conducted numerical simulations to evaluate the Receiver Operating Characteristic (ROC) of the LiDAR system. The results indicate that an intercept-and-recent spoofing attack can be detected with a high probability at a low false-alarm rate. Furthermore, the proposed method can be implemented using currently available technology, highlighting its feasibility and practicality in real-world applications.
依赖经典信号的激光雷达系统容易受到拦截与重发欺骗攻击,即目标试图躲避检测。为解决这一漏洞,我们提出一种量子安全激光雷达协议,该协议利用高斯调制相干态进行距离测定和欺骗攻击检测。通过利用信号的高斯特性,激光雷达系统可通过互相关分析准确确定目标的距离。此外,通过估计激光雷达系统的过量噪声,可检测出目标实施的欺骗攻击,因为这种攻击会给信号引入额外噪声。我们开发了一个目标测距和安全检查模型,并进行了数值模拟以评估激光雷达系统的接收者操作特征(ROC)。结果表明,在低误报率的情况下,可以高概率检测到拦截与重发欺骗攻击。此外,所提出的方法可以使用现有技术来实现,突出了其在实际应用中的可行性和实用性。