论文标题
智能运输系统的安全位置意识认证和通信
Secure Location-Aware Authentication and Communication for Intelligent Transportation Systems
论文作者
论文摘要
智能运输系统(ITS)有效地创建一个独立网络,以在自主代理之间进行安全通信。在具有高速代理的动态和快速变化的网络中,在采取预防措施(例如,施加制动器)的同时验证消息的真实性和完整性是主要挑战之一。在收到消息后的短暂时刻,代理商不仅必须验证接收到的消息的完整性和真实性,而且还需要执行额外的计算以将消息的发件人定位以采取适当的措施(例如,从前车辆中的车辆与后方的车辆立即停止警告)。在本文中,我们通过利用原位视觉定位(即SLAM)来呈现一种本质上具有位置感知和轻巧的身份验证协议。在此协议中,每个代理使用视觉身份验证信标(例如QR码)显示其公共密钥。因此,接收代理不仅可以验证和身份验证消息,而且可以通过将观察到的视觉信标的候选名单放在其视觉定位系统中,而没有其他计算成本来轻松定位发件人。与先前的工作相比,我们的位置感知协议是可扩展的,不取决于任何基础架构,删除了发传递后交付的本地化的高成本,并为每个代理传感器无法触及的信息提供了可信度的保证。
Intelligent transportation systems (ITS) are expected to effectively create a stand-alone network for secure communication among autonomous agents. In such a dynamic and fast-changing network with high-speed agents, verifying the authenticity and integrity of messages while taking preventive action (e.g., applying brakes) within tens of milliseconds is one of the main challenges. In such a brief moment after receiving a message, the agent not only must verify the integrity and authenticity of the received message but also needs to perform extra computations to localize the sender of the message for taking appropriate action (e.g., an immediate stop warning from a vehicle in front vs. rear). In this paper, we present an inherently location-aware and lightweight authentication protocol by exploiting in situ visual localization (i.e., SLAM). In this protocol, each agent displays its public key using visual authentication beacons (e.g., QR codes). Thus, receiving agents not only can verify and authenticate the messages but also can easily localize the sender by keeping a shortlist of observed visual beacons within their visual localization system with no additional computation cost. Compared to prior work, our location-aware protocol is scalable, does not depend on any infrastructure, removes the high cost of post-message-delivery localization, and provides trustworthiness guarantees for information that are beyond the reach of each agent sensors.