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Verification and Inference of Positions in Vehicular Networks throughAnonymous Beaconing

机译:通过匿名信标验证和推断车辆网络中的位置

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摘要

A number of vehicular networking applications require continuous knowledge of the location of vehicles and tracking of the routes they follow, including, e.g., real-time traffic monitoring, e-tolling, and liability attribution in case of accidents. Locating and tracking vehicles has however strong implications in terms of security and user privacy. On the one hand, there should be a mean for an authority to verify the correctness of positioning information announced by a vehicle, so as to identify potentially misbehaving cars. On the other, public disclosure of identity and position of drivers should be avoided, so as not to jeopardize user privacy. In this paper, we address such issues by introducing A-VIP, a secure, privacy-preserving framework for continuous tracking of vehicles. A-VIP leverages anonymous position beacons from vehicles, and the cooperation of nearby cars collecting and reporting the beacons they hear. Such information allows a location authority to verify the positions announced by vehicles, or to infer the actual ones if needed, without resorting to computationally expensive asymmetric cryptography. We assess the effectiveness of A-VIP via realistic simulation and experimental testbeds.
机译:许多车载网络应用程序需要连续了解车辆的位置并跟踪其遵循的路线,例如,包括实时交通监控,电子收费和事故情况下的责任归属。但是,在安全性和用户隐私方面,定位和跟踪车辆具有重要意义。一方面,授权机构应该有一种手段来验证车辆所宣告的定位信息的正确性,从而识别出可能发生故障的汽车。另一方面,应避免公开披露驾驶员的身份和职位,以免危害用户隐私。在本文中,我们通过引入A-VIP(用于连续跟踪车辆的安全,隐私保护框架)来解决此类问题。 A-VIP利用车辆的匿名位置信标以及附近汽车的合作来收集和报告他们听到的信标。这样的信息允许位置管理机构验证车辆宣布的位置,或者在需要时推断实际位置,而无需诉诸于计算上昂贵的非对称密码学。我们通过现实仿真和实验测试台评估了A-VIP的有效性。

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