Previous work on misbehavior detection and trust management for Vehicle-to-Everything (V2X) communication can identify falsified and malicious messages, enabling witness vehicles to report observations about high-criticality traffic events. However, there may not exist enough "benign" vehicles with V2X connectivity or vehicle owners who are willing to opt-in in the early stages of connected-vehicle deployment. In this paper, we propose a security protocol for the communication between vehicles and infrastructure, titled Proof-of-Travel (POT), to answer the research question: How can we transform the power of cryptography techniques embedded within the protocol into social and economic mechanisms to simultaneously incentivize Vehicle-to-Infrastructure (V2I) data sharing activities and validate the data? The key idea is to determine the reputation of and the contribution made by a vehicle based on its distance traveled and the information it shared through V2I channels. In particular, the total vehicle miles traveled for a vehicle must be testified by digital signatures signed by each infrastructure component along the path of its movement. While building a chain of proofs of spatial movement creates burdens for malicious vehicles, acquiring proofs does not result in extra cost for normal vehicles, which naturally want to move from the origin to the destination. The proof of travel for a vehicle can then be used to determine the contribution and reward by its altruistic behaviors. We propose short-term and long-term incentive designs based on the POT protocol and evaluate their security and performance through theoretical analysis and simulations.
翻译:先前关于车辆对一切(V2X)通信的错误行为探测和信任管理的工作,在车辆对一切(V2X)通信的错误行为探测和信任管理方面开展的工作,可以识别伪造和恶意的信息,使证人车辆能够同时报告关于高度临界交通事件的观察;然而,可能没有足够的V2X连接的“隐性”车辆或愿意在连接车辆部署的早期阶段选择使用车辆的车主;在本文件中,我们提出了车辆与基础设施之间通信的安全协议,题为“轨迹校准”(POT),以回答研究问题:我们如何将协议中嵌入的加密技术的力量转化为社会和经济机制,以便同时鼓励车辆对基础设施的数据共享活动和验证数据?关键的想法是确定车辆的声誉和贡献,以其距离和通过V2I渠道共享的信息。特别是,车辆行驶的总车辆行驶英里必须由每个基础设施组成部分在行驶过程中签署的数字签名作为证明。在建立空间移动证据链时,会给恶意车辆带来短期负担,同时鼓励车辆对数据共享活动和核实数据验证数据;从正常的行驶到目的地,获得证据,从而证明,从而确定车辆的飞行的正常运行结果。