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GPS Signal Authentication From Cooperative Peers

机译:来自合作伙伴的GPS信号认证

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摘要

Secure reliable position information is indispensable for many transportation systems and services, such as traffic monitoring, fleet management, electronic toll collection, route guidance, vehicle telematics, and emergency response. Unfortunately, civil Global Positioning System (GPS) signals are vulnerable to spoofing attacks. This paper introduces a signal authentication architecture based on a network of cooperative GPS receivers. A receiver in the network correlates its received military P(Y) signal with those received by other receivers (hereinafter referred to as cross-check receivers) to detect spoofing attacks. This paper describes three candidate structures to implement this architecture and evaluates spoofing detection performance through theoretical analyses and field experiments. We show that the spoofing detection performance improves exponentially with increasing number of cross-check receivers. Even if the cross-check receivers are low cost, unreliable, and in challenging environment, cooperative authentication can match, if not outperform, a single high-quality reliable reference receiver in terms of spoofing detection performance.
机译:安全可靠的位置信息对于许多交通运输系统和服务都是必不可少的,例如交通监控,车队管理,电子收费,路线导航,车辆远程信息处理和紧急响应。不幸的是,民用全球定位系统(GPS)信号容易受到欺骗攻击。本文介绍了一种基于协作GPS接收器网络的信号认证架构。网络中的接收器将其接收到的军事P(Y)信号与其他接收器(以下称为“交叉检查”接收器)接收到的信号进行关联,以检测欺骗攻击。本文描述了实现该体系结构的三种候选结构,并通过理论分析和现场实验评估了欺骗检测的性能。我们表明,随着交叉检查接收器数量的增加,欺骗检测性能也呈指数增长。即使交叉检查接收器成本低廉,不可靠并且在具有挑战性的环境中,协作认证也可以在欺骗检测性能方面与单个高质量可靠的参考接收器相匹配(如果不能胜过)。

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