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Power Control Identification: A Novel Sybil Attack Detection Scheme in VANETs Using RSSI

机译:功率控制识别:使用RSSI的VANET中新型的Sybil攻击检测方案

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Vehicular ad hoc networks (VANETs) have far-reaching application potentials in the intelligent transportation system (ITS) such as traffic management, accident avoidance and in-car infotainment. However, security has always been a challenge to VANETs, which may cause severe harm to the ITS. Sybil attack is considered as a serious security threat to VANETs since the adversary can disseminate false messages with multiple forged identities to attack various applications in the ITS. RSSI-based Sybil nodes detection is an efficient scheme against Sybil attacks, which adopts position estimation, distribution verification or similarity comparison to identify Sybil nodes. However, when Sybil nodes conduct power control to deliberately change transmission powers, the received RSSI values would change correspondingly, which leads to inaccurate localization or different RSSI time series of these Sybil nodes. Thus, it is very difficult to differentiate Sybil nodes from normal nodes via conventional RSSI-based methods. This paper first discusses potential power control models (PCMs) for launching Sybil attacks in VANETs, then presents two simple Sybil attack models and three sophisticated Sybil attack ones with or without power control in detail, finally proposes a power control identification Sybil attack detection (PCISAD) scheme to find anomalous variations in RSSI time series, which are then used to identify Sybil nodes via a linear SVM classifier. Extensive simulations and real-world experiments prove that the proposed scheme can effectively deal with Sybil attacks with power control.
机译:车载自组织网络(VANET)在智能交通系统(ITS)中具有广泛的应用潜力,例如交通管理,事故预防和车载信息娱乐系统。但是,安全性一直是VANET面临的挑战,这可能会对ITS造成严重损害。 Sybil攻击被视为对VANET的严重安全威胁,因为攻击者可以散布具有多个伪造身份的虚假消息来攻击ITS中的各种应用程序。基于RSSI的Sybil节点检测是一种针对Sybil攻击的有效方案,它采用位置估计,分布验证或相似度比较来识别Sybil节点。但是,当Sybil节点进行功率控制以故意改变发射功率时,接收到的RSSI值将相应地改变,这将导致这些Sybil节点的定位不准确或RSSI时间序列不同。因此,通过传统的基于RSSI的方法将Sybil节点与普通节点区分开是非常困难的。本文首先讨论了在VANET中发起Sybil攻击的潜在功率控制模型(PCM),然后详细介绍了两种简单的Sybil攻击模型和三种复杂的Sybil攻击模型(带有或不带有功率控制),最后提出了功率控制识别Sybil攻击检测(PCISAD) )方案,以找到RSSI时间序列中的异常变化,然后通过线性SVM分类器将其用于识别Sybil节点。大量的仿真和实际实验证明,该方案可以有效控制功率控制下的Sybil攻击。

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