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Towards secure and privacy preserving collision avoidance system in 5G fog based Internet of Vehicles

机译:在基于5G雾的车联网中实现安全和隐私保护的碰撞避免系统

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Current avoidance systems mainly focus on the safety of the car occupants. The surrounding entities including the pedestrians, the cyclists are assumed to use a different avoidance system for their safety. Vehicle speed is reported as one of the major factors that causes such severe road accidents that affect other entities on the road. In response, several solutions have been implemented to control the causalities of over speeding ranging from speed camera, speed detectors to car avoidance systems. However, those solutions have not significantly improved the rate of traffic accidents and their impact. Additionally, the current solutions do not ensure timely notification of all the road users (surrounding vehicle drivers, pedestrians or others) that can alleviate crash causalities in case of fatal traffic accidents. The fifth generation (5G) cellular network is predicted to overcome the current limitations of Internet of-Vehicles (boy) by offering fast, low latency and reliable connections to enable boy based applications. Fog computing has also been proposed to complement IoV by bringing computational entities in nearby proximity of the vehicles. 5G based fog vehicular networks is a new paradigm that empower real-time and low latency services for Intelligent Transportation System (ITS). In this paper we proposed a secure and privacy-preserving collision avoidance system in 5G fog based boy. The fog devices are used to collect speed violation report (TVR) sent by the vehicles' speed sensors. The fog nodes aggregate multiple TVRs, verify the signatures on the TVRs and broadcast anonymous notifications to other entities in the vicinity. The protocol makes use of certificateless aggregate signcryption coupled with pseudonymous technique as the building blocks to ensure authentication, integrity, confidentiality and privacy preservation respectively. The batch verification technique is used by the fog devices to allow simultaneous TVRs signature verification for a timely response. The authorization of reporting speed sensors is both guaranteed by the location-based information along with the digital signature to discard all the bogus TVRs. The analysis of the protocol confirms its lightweightness and efficiency. (C) 2019 Elsevier B.V. All rights reserved.
机译:当前的回避系统主要集中在乘员的安全上。包括行人,骑自行车者在内的周围实体被假定为安全起见使用了不同的回避系统。据报告,车速是导致严重道路交通事故并影响道路上其他实体的主要因素之一。作为响应,从速度相机,速度检测器到汽车回避系统,已经实施了几种解决方案来控制超速的原因。但是,这些解决方案并没有显着提高交通事故的发生率及其影响。另外,当前的解决方案不能确保及时通知所有道路使用者(周围的车辆驾驶员,行人或其他人),以减轻致命交通事故中撞车事故的影响。预计第五代(5G)蜂窝网络将通过提供快速,低延迟和可靠的连接来启用基于男孩的应用程序,从而克服车载Internet(男孩)的当前限制。还提出了雾计算以通过将计算实体带到车辆附近来补充IoV。基于5G的雾车网络是一种新的范例,可为智能交通系统(ITS)提供实时和低延迟的服务。在本文中,我们提出了一个基于5G雾的男孩的安全且可保护隐私的碰撞避免系统。雾气设备用于收集车辆速度传感器发送的速度违规报告(TVR)。雾节点聚合多个TVR,验证TVR上的签名,并将匿名通知广播到附近的其他实体。该协议利用无证书聚合签密和假名技术作为构建模块,分别确保认证,完整性,机密性和隐私保护。雾设备使用批量验证技术,以允许同时进行TVR签名验证,以便及时响应。基于位置的信息以及用于丢弃所有伪造TVR的数字签名均保证了报告速度传感器的授权。对该协议的分析证实了其轻巧性和效率。 (C)2019 Elsevier B.V.保留所有权利。

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