Awan Kamran Ahmad, Din Ikram Ud, Almogren Ahmad, Kim Byung-Seo, Altameem Ayman
Department of Information Technology, The University of Haripur, Haripur 22620, Pakistan.
Chair of Cyber Security, Department of Computer Science, College of Computer and Information Sciences, King Saud University, Riyadh 11633, Saudi Arabia.
Sensors (Basel). 2021 Nov 5;21(21):7363. doi: 10.3390/s21217363.
Vehicular Ad hoc Network (VANET) is a modern concept that enables network nodes to communicate and disseminate information. VANET is a heterogeneous network, due to which the VANET environment exposes to have various security and privacy challenges. In the future, the automobile industry will progress towards assembling electric vehicles containing energy storage batteries employing these resources to travel as an alternative to gasoline/petroleum. These vehicles may have the capability to share their energy resources upon the request of vehicles having limited energy resources. In this article, we have proposed a trust management-based secure energy sharing mechanism, named vTrust, which computes the trust degree of nodes to authenticate nodes. The proposed mechanism is a multi-leveled centralized approach utilizing both the infrastructure and vehicles to sustain a secure environment. The proposed vTrust can aggregate and propagate the degree of trust to enhance scalability. The node that requests to obtain the energy resources may have to maintain a specified level of trust threshold for earning resources. We have also evaluated the performance of the proposed mechanism against several existing approaches and determine that the proposed mechanism can efficiently manage a secure environment during resource sharing by maintaining average malicious nodes detection of 91.3% and average successful energy sharing rate of 89.5%, which is significantly higher in comparison to the existing approaches.
车载自组织网络(VANET)是一种使网络节点能够进行通信和信息传播的现代概念。VANET是一个异构网络,因此VANET环境面临各种安全和隐私挑战。未来,汽车行业将朝着组装包含储能电池的电动汽车发展,利用这些资源来替代汽油/石油出行。这些车辆可能有能力应能源资源有限的车辆的请求共享其能源资源。在本文中,我们提出了一种基于信任管理的安全能源共享机制,名为vTrust,它通过计算节点的信任度来认证节点。所提出的机制是一种利用基础设施和车辆来维持安全环境的多层次集中式方法。所提出的vTrust可以聚合和传播信任度以提高可扩展性。请求获取能源资源的节点可能必须维持指定水平的信任阈值才能获取资源。我们还针对几种现有方法评估了所提出机制的性能,并确定所提出的机制在资源共享期间能够通过保持91.3%的平均恶意节点检测率和89.5%的平均成功能源共享率来有效地管理安全环境,与现有方法相比,这一比率显著更高。