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Secure and privacy-preserving vehicular communications.

机译:安全且保护隐私的车辆通信。

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摘要

Road safety has been drawing increasing attention in the public, and has been subject to extensive efforts from both industry and academia in mitigating the impact of traffic accidents. Recent advances in wireless technology promise new approaches to facilitating road safety and traffic management, where each vehicle (or referred to as On-board unit (OBU)) is allowed to communicate with each other as well as with Roadside units (RSUs), which are located in some critical sections of the road, such as a traffic light, an intersection, and a stop sign. With the OBUs and RSUs, a self-organized network, called Vehicular Ad Hoc Network (VANET), can thus be formed. Unfortunately, VANETs have faced various security threats and privacy concerns, which would jeopardize the public safety and become the main barrier to the acceptance of such a new technology. Hence, addressing security and privacy issues is a prerequisite for a market-ready VANET. Although many studies have recently addressed a significant amount of efforts in solving the related problems, few of the studies has taken the scalability issues into consideration. When the traffic density is getting large, a vehicle may become unable to verify the authenticity of the messages sent by its neighbors in a timely manner, which may result in message loss so that public safety may be at risk. Communication overhead is another issue that has not been well addressed in previously reported studies. Many efforts have been made in recent years in achieving efficient broadcast source authentication and data integrity by using fast symmetric cryptography. However, the dynamic nature of VANETs makes it very challenging in the applicability of these symmetric cryptography-based protocols.;In this research, we propose a novel Secure and Efficient RSU-aided Privacy Preservation Protocol, called SERP3, in order to achieve efficient secure and privacy-preserving Inter-Vehicle Communications (IVCs). With the commitments of one-way key chains distributed to vehicles by RSUs, a vehicle can effectively authenticate any received message from vehicles nearby even in the presence of frequent change of its neighborship. Compared with previously reported public key infrastructure (PKI)-based packet authentication protocols for security and privacy, the proposed protocol not only retains the security and privacy preservation properties, but also has less packet loss ratio and lower communication overhead, especially when the road traffic is heavy. Therefore, the protocol solves the scalability and communication overhead issues, while maintaining acceptable packet latency. However, RSU may not exist in some situations, for example, in the early stage deployment phase of VANET, where unfortunately, SERP 3 is not suitable. Thus, we propose a complementary Efficient and Cooperative Message Validation Protocol, called ECMVP, where each vehicle probabilistically validates a certain percentage of its received messages based on its own computing capacity and then reports any invalid messages detected by it.;Since the ultimate goal of designing VANET is to develop vehicle safety/non-safety related applications to improve road safety and facilitate traffic management, two vehicle applications are further proposed in the research to exploit the advantages of vehicular communications. First, a novel vehicle safety application for achieving a secure road traffic control system in VANETs is developed. The proposed application helps circumvent vehicles safely and securely through the areas in any abnormal situation, such as a car crash scene, while ensuring the security and privacy of the drivers from various threats. It not only enhances traveler safety but also minimizes capacity restrictions due to any unusual situation. Second, the dissertation investigates a novel mobile payment system for highway toll collection by way of vehicular communications, which addresses all the issues in the currently existing toll collection technologies.
机译:道路安全已引起公众越来越多的关注,并且在减轻交通事故的影响方面已经受到工业界和学术界的广泛努力。无线技术的最新进展为促进道路安全和交通管理提供了新的方法,该方法允许每辆车(或称为车载单元(OBU))彼此通信以及与路边单元(RSU)通信。位于道路的一些关键区域,例如交通信号灯,十字路口和停车标志。借助OBU和RSU,可以形成一个称为汽车自组织网络(VANET)的自组织网络。不幸的是,VANET面临各种安全威胁和隐私问题,这将危害公共安全,并成为接受这种新技术的主要障碍。因此,解决安全和隐私问题是面向市场的VANET的前提。尽管最近有许多研究致力于解决相关问题,但是很少有研究将可伸缩性问题考虑在内。当交通密度变大时,车辆可能无法及时验证其邻居发送的消息的真实性,这可能导致消息丢失,从而可能危及公共安全。通信开销是先前报告的研究中尚未很好解决的另一个问题。近年来,通过使用快速对称加密技术,为实现有效的广播源身份验证和数据完整性做出了许多努力。但是,VANET的动态性质使其在这些基于对称密码的协议的适用性方面具有很大挑战性。在本研究中,我们提出了一种新颖的安全高效的RSU辅助隐私保护协议SERP3,以实现有效的安全性。以及保持隐私的车间通信(IVC)。借助RSU向车辆分发的单向钥匙链的承诺,即使在邻居频繁变化的情况下,车辆也可以有效地验证附近车辆收到的任何消息。与先前报告的基于安全性和隐私的基于公钥基础结构(PKI)的数据包身份验证协议相比,该协议不仅保留了安全性和隐私保护属性,而且具有更低的数据包丢失率和更低的通信开销,尤其是在道路交通时很重因此,该协议解决了可伸缩性和通信开销问题,同时保持了可接受的数据包延迟。但是,在某些情况下RSU可能不存在,例如,在VANET的早期部署阶段,不幸的是SERP 3不适合。因此,我们提出了一种名为ECMVP的补充高效协同消息验证协议,其中每辆车都根据自身的计算能力概率性地验证其接收消息的一定百分比,然后报告其检测到的任何无效消息。 VANET的设计是为了开发与车辆安全/非安全相关的应用程序,以改善道路安全并促进交通管理,在研究中还提出了两种车辆应用程序,以利用车辆通信的优势。首先,开发了一种新颖的车辆安全应用程序,用于在VANET中实现安全的道路交通控制系统。所提出的应用程序可帮助在任何异常情况下(例如车祸现场)安全可靠地绕过车辆区域,同时确保驾驶员的安全和隐私免受各种威胁。它不仅可以提高旅行者的安全性,而且可以将由于任何异常情况导致的交通容量限制降至最低。其次,本文研究了一种新型的通过车辆通信进行高速公路收费的移动支付系统,该系统解决了现有收费技术中的所有问题。

著录项

  • 作者

    Lin, Xiaodong.;

  • 作者单位

    University of Waterloo (Canada).;

  • 授予单位 University of Waterloo (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 153 p.
  • 总页数 153
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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