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Modelling of Security Principles Within Car-to-Car Communications in Modern Cooperative Intelligent Transportation Systems

机译:现代协作式智能运输系统中车对车通信中的安全原理建模

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Intelligent transportation systems (ITS) bring advanced applications that provide innovative services for various transportation modes in the area of traffic control, and enable better awareness for different users. Communication connections between intelligent vehicles with the use of wireless communication standards, so called Vehicular Ad Hoc Networks (VANETs), require ensuring verification of validity of provided services as well as services related to transmission confidentiality and integrity. The goal of this paper is to analyze secure mechanisms utilised in VANET communication within Cooperative Intelligent Transportation Systems (C-ITS) with a focus on safety critical applications. The practical part of the contribution is dedicated to modelling of security properties of VANET networks via OPNET Modeler tool extended by the implementation of the OpenSSL library for authentication protocol realisation based on digital signature schemes. The designed models simulate a transmission of authorised alert messages in Car-to-Car communication for several traffic scenarios with recommended Elliptic Curve Integrated Encryption Scheme (ECIES). The obtained results of the throughput and delay in the simulated network are compared for secured and no-secured communications in dependence on the selected digital signature schemes and the number of mobile nodes. The OpenSSL library has also been utilised for the comparison of time demandingness of digital signature schemes based on RSA (Rivest Shamir Adleman), DSA (Digital Signature Algorithm) and ECDSA (Elliptic Curve Digital Signature Algorithm) for different key-lengths suitable for real time VANET communications for safety-critical applications of C-ITS.
机译:智能交通系统(ITS)带来了先进的应用程序,可为交通控制领域的各种交通模式提供创新的服务,并提高不同用户的意识。使用无线通信标准的智能车辆之间的通信连接,即所谓的车载自组织网络(VANET),需要确保验证所提供服务以及与传输机密性和完整性有关的服务的有效性。本文的目的是分析协作智能运输系统(C-ITS)中VANET通信中使用的安全机制,重点关注安全关键应用。该贡献的实践部分致力于通过OPNET Modeler工具对VANET网络的安全属性进行建模,该工具扩展了OpenSSL库的实现,用于基于数字签名方案的身份验证协议的实现。设计的模型使用推荐的椭圆曲线集成加密方案(ECIES)在几种交通情况下模拟车对车通信中授权警报消息的传输。根据所选的数字签名方案和移动节点的数量,比较获得的模拟网络中吞吐量和延迟的结果,以进行安全通信和不安全通信。 OpenSSL库也已用于比较基于RSA(Rivest Shamir Adleman),DSA(数字签名算法)和ECDSA(椭圆曲线数字签名算法)的数字签名方案的时间要求,以适合实时的不同密钥长度。用于C-ITS的安全关键型应用的VANET通信。

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