Rathee Geetanjali, Sharma Ashutosh, Iqbal Razi, Aloqaily Moayad, Jaglan Naveen, Kumar Rajiv
Department of Computer Science and Engineering, Jaypee University of Information Technology, Waknaghat, Solan 173234, India.
Department of Electronics and Communication, Jaypee University of Information Technology, Waknaghat, Solan 173234, India.
Sensors (Basel). 2019 Jul 18;19(14):3165. doi: 10.3390/s19143165.
Recently, connected vehicles (CV) are becoming a promising research area leading to the concept of CV as a Service (CVaaS). With the increase of connected vehicles and an exponential growth in the field of online cab booking services, new requirements such as secure, seamless and robust information exchange among vehicles of vehicular networks are emerging. In this context, the original concept of vehicular networks is being transformed into a new concept known as connected and autonomous vehicles. Autonomous vehicular use yields a better experience and helps in reducing congestion by allowing current information to be obtained by the vehicles instantly. However, malicious users in the internet of vehicles may mislead the whole communication where intruders may compromise smart devices with the purpose of executing a malicious ploy. In order to prevent these issues, a blockchain technique is considered the best technique that provides secrecy and protection to the control system in real time conditions. In this paper, the issue of security in smart sensors of connected vehicles that can be compromised by expert intruders is addressed by proposing a blockchain framework. This study has further identified and validated the proposed mechanism based on various security criteria, such as fake requests of the user, compromise of smart devices, probabilistic authentication scenarios and alteration in stored user's ratings. The results have been analyzed against some existing approach and validated with improved simulated results that offer 79% success rate over the above-mentioned issues.
最近,联网车辆(CV)正成为一个很有前景的研究领域,由此引出了“CV即服务(CVaaS)”的概念。随着联网车辆数量的增加以及在线打车服务领域呈指数级增长,车辆网络中车辆之间安全、无缝且稳健的信息交换等新需求不断涌现。在此背景下,车辆网络的原始概念正在转变为一种名为“联网自动驾驶车辆”的新概念。自动驾驶车辆的使用带来了更好的体验,并通过让车辆即时获取当前信息来帮助缓解拥堵。然而,车联网中的恶意用户可能会误导整个通信,入侵者可能会为了实施恶意策略而破坏智能设备。为了防止这些问题,区块链技术被认为是在实时条件下为控制系统提供保密性和保护的最佳技术。在本文中,通过提出一个区块链框架来解决联网车辆智能传感器中可能被专业入侵者破坏的安全问题。本研究还基于各种安全标准,如用户的虚假请求、智能设备的受损、概率认证场景以及存储的用户评分的改变,对所提出的机制进行了进一步识别和验证。针对一些现有方法对结果进行了分析,并用改进后的模拟结果进行了验证,这些模拟结果在上述问题上的成功率达到了79%。