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Toward Blockchain-Enabled IoV with Edge Computing: Efficient and Privacy-Preserving Vehicular Communication and Dynamic Updating

机译:通过边缘计算启用了BlockChain的IOV:高效和隐私保存的车辆通信和动态更新

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By virtue of intelligent data processing and vehicular network, Internet of Vehicle (IoV) provides the transport system with real-time traffic information, which greatly improves the traffic conditions of the city. Moreover, to ease the computing and storage burden of the increasing number of the vehicle, edge computing is introduced to offload computing tasks on the local with low latency. But it still suffers from data integrity and privacy concerns. To meet these challenges, this paper proposes an efficient and conditional privacy-preserving authentication protocol using blockchain-enabled IoV with edge computing. Specifically, edge computing and consortium blockchains are combined to support efficient computation and storage capabilities with low communication delay while providing data auditability. Also, a pseudonym mechanism and identity-based signature are utilized to achieve identity privacy-preserving conditionally and messages authentication of vehicles, respectively. Moreover, for the dynamic change of vehicles, a clustering selection algorithm and a key updating algorithm based on Chinese remainder theorem are given, which guarantees the forward and backward security of transmission information. Security analysis and experiment evaluation with respect of communication and computation cost demonstrate the effectiveness of the proposed protocol.
机译:凭借智能数据处理和车辆网络,车辆互联网(IOV)提供了具有实时交通信息的运输系统,这大大提高了城市的交通状况。此外,为了缓解越来越多的车辆的计算和存储负担,引入了边缘计算以卸载局部的计算任务,以低延迟。但它仍然存在数据完整性和隐私问题。为满足这些挑战,本文提出了使用具有边缘计算的BlockChain的IOV的高效和有条件的隐私保留认证协议。具体地,结合边缘计算和联盟区块链以支持具有低通信延迟的有效计算和存储能力,同时提供数据互动性。此外,利用假名机制和基于身份的签名来分别有条件地实现身份隐私保留和车辆的消息认证。此外,对于车辆的动态变化,给出了基于中文剩余定理的聚类选择算法和基于中文剩余定理的密钥更新算法,这保证了传输信息的前向和后向安全性。关于通信和计算成本的安全性分析和实验评估展示了所提出的协议的有效性。

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