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Towards a Blockchain and Software-Defined Vehicular Networks Approaches to Secure Vehicular Social Network

机译:朝向区块链和软件定义的车辆网络来保护车辆社交网络

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In this paper, we propose a new framework based on two main concepts: Software-Defined Vehicular Networks (SDVN) and Blockchain to efficiently manage and secure Vehicular Social Network (VSN). Using SDVN makes the network programmable, virtualized, and partitionable, but also it creates a well-known vulnerability named single-point of failure. Hence we propose to introduce a Blockchain paradigm that enables to certify the transactions and provide anonymity of data in distributed way using miners nodes. To this end, we introduce three levels of controllers: Principal controller (PC), Road Side Units (RSU) and miners. The PC has a global overview of the network like network topology. The RSU is an intermediate between the PC and the miners. We select local controllers acting as miners due to safety and performance. In order to select miners, we propose a Distributed Miners Connected Dominating Set algorithm (DM-CDS). The DM-CDS is a distributed algorithm with a single phase that supports dynamic topology. The selection of miners is based on a function called miner-score which depends on trust parameter particularly trust metric and network parameters such as: the connectivity degree, the average link quality indicator and the rank. The performance of the proposed DM-CDS is evaluated using many scenarios with different parameters like trust metric, node density, node mobility and radio range. The obtained results show the importance of the proposed architecture in terms of number of miners (CDS size) and robustness with different scenarios.
机译:在本文中,我们提出了一种基于两个主要概念的新框架:软件定义的车辆网络(SDVN)和区块链,以有效地管理和安全的车辆社交网络(VSN)。使用SDVN使网络可编程,虚拟化和分区,但它也创建了一个名为单点故障的众所周知的漏洞。因此,我们建议引入扩展区块的范式,该扩展范式能够通过矿主节点提供分布式方式中的数据并提供数据的匿名性。为此,我们介绍了三级控制器:主控制器(PC),道路侧单位(RSU)和矿工。 PC具有网络拓扑等网络的全局概述。 RSU是PC和矿工之间的中间。由于安全性和性能,我们选择作为矿工的本地控制器。为了选择矿工,我们提出了一个分布式矿工连接的主导集合算法(DM-CD)。 DM-CD是一种分布式算法,具有支持动态拓扑的单个阶段。矿工的选择是基于一个名为Miner评分的函数,这取决于信任参数特别是信任度量和网络参数,例如:连接度,平均链路质量指示符和等级。使用具有不同参数的许多场景来评估所提出的DM-CD的性能,如信任度量标准,节点密度,节点移动和无线电范围。所获得的结果表明拟议的架构在矿工(CDS大小)和具有不同方案的鲁棒性方面的重要性。

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