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Self-Controllable Secure Location Sharing for Trajectory-Based Message Delivery on Cloud-Assisted VANETs

机译:可自我控制的安全位置共享用于在基于云的VANET上基于轨迹的消息传递

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摘要

In vehicular ad hoc networks, trajectory-based message delivery is a message forwarding strategy that utilizes the vehicle’s preferred driving routes information to deliver messages to the moving vehicles with the help of roadside units. For the purpose of supporting trajectory-based message delivery to a moving vehicle, the driving locations of the vehicle need to be shared with message senders. However, from a security perspective, vehicle users do not want their driving locations to be exposed to others except their desired senders for location privacy preservation. Therefore, in this paper, we propose a secure location-sharing system to allow a vehicle user (or driver) to share his/her driving trajectory information with roadside units authorized by the user. To design the proposed system, we put a central service manager which maintains vehicle trajectory data and acts as a broker between vehicles and roadside units to share the trajectory data on the cloud. Nevertheless, we make the trajectory data be hidden from not only unauthorized entities but also the service manager by taking advantage of a proxy re-encryption scheme. Hence, a vehicle can control that only the roadside units designated by the vehicle can access the trajectory data of the vehicle.
机译:在车辆自组织网络中,基于轨迹的消息传递是一种消息转发策略,该策略利用车辆的首选行驶路线信息在路边单元的帮助下将消息传递给行驶中的车辆。为了支持将基于轨迹的消息传递到行驶中的车辆,需要与消息发送者共享车辆的行驶位置。但是,从安全角度来看,车辆用户不希望将其驾驶位置暴露给其他人,除了他们希望保留位置隐私的发件人之外。因此,在本文中,我们提出了一种安全的位置共享系统,以允许车辆用户(或驾驶员)与用户授权的路边单位共享其驾驶轨迹信息。为了设计建议的系统,我们安排了一个中央服务管理器来维护车辆轨迹数据,并充当车辆和路边单元之间的代理,以在云上共享轨迹数据。尽管如此,我们还是利用代理重新加密方案使轨迹数据不仅对未授权实体而且对服务管理器都隐藏。因此,车辆可以控制仅由车辆指定的路边单元可以访问车辆的轨迹数据。

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