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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Privacy-Preserving Authentication Scheme for Connected Electric Vehicles Using Blockchain and Zero Knowledge Proofs
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Privacy-Preserving Authentication Scheme for Connected Electric Vehicles Using Blockchain and Zero Knowledge Proofs

机译:使用区块链和零知识证据的连接电动车辆防护验证方案

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摘要

With the increasing interest in connected vehicles along with electrification opportunities, there is an ongoing effort to automate the charging process of electric vehicles (EVs) through their capabilities to communicate with the infrastructure and each other. However, charging EVs takes time and thus in-advance scheduling is needed. As this process is done frequently due to limited mileage per charge on EVs, it may expose the locations and charging pattern of the EV to the service providers, raising privacy concerns for their users. Nevertheless, the EV still needs to be authenticated to charging providers, which means some information will need to be provided anyway. While there have been many studies to address the problem of privacy-preserving authentication for vehicular networks, such solutions will be void if charging payments are made through traditional means. In this paper, we tackle this problem by utilizing distributed applications enabled by Blockchain and smart contracts. We adapt zero-knowledge proofs to Blockchain for enabling privacy-preserving authentication while removing the need for a central authority. We introduce two approaches, one using a token-based mechanism and another utilizing the Pederson Commitment scheme to realize anonymous authentication. We also describe a protocol for the whole process which includes scheduling and charging operations. The evaluation of the proposed approaches indicates that the overhead of this process is affordable to enable real-time charging operations for connected EVs.
机译:随着连接车辆的兴趣越来越多,随着电气化机会,存在持续努力使电动车辆(EVS)的充电过程能够通过其能力与基础设施和彼此通信。但是,充电EVS需要时间,因此需要提前调度。由于此过程经常由于EVS上的每次充电有限而进行,因此它可能会使EV的位置和充电模式暴露给服务提供商,为其用户提高隐私问题。尽管如此,EV仍然需要对充电提供商进行身份验证,这意味着无论如何需要提供一些信息。虽然已经有很多研究来解决用于车辆网络的隐私保留身份验证问题,但如果通过传统手段进行计费支付,则这种解决方案将无效。在本文中,我们通过利用BlockChain和智能合同所启用的分布式应用程序来解决此问题。我们调整零知识证明为区块链接,以实现隐私保留身份验证,同时删除中心权限。我们介绍了两种方法,一个使用基于令牌的机制,另一个利用Pederson承诺方案来实现匿名认证。我们还描述了整个过程的协议,包括调度和充电操作。对所提出的方法的评估表明,该过程的开销价格实惠,以便为连接的EV启用实时计费操作。

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