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Securing Smart City Surveillance: A Lightweight Authentication Mechanism for Unmanned Vehicles

机译:确保智能城市监控:无人驾驶车辆的轻量级认证机制

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摘要

The significance of the Internet of Drones (IoD) is increasing steadily and now IoD is being practiced in many military and civilian-based applications. IoD facilitates real-time data access to the users especially the surveillance data in smart cities using the current cellular networks. However, due to the openness of communication channel and battery operations, the drones and the sensitive data collected through drones are subject to many security threats. To cope the security challenges, recently, Srinivas et al. proposed a temporal credential based anonymous lightweight authentication scheme (TCALAS) for IoD networks. Contrary to the IoD monitoring framework proposed by Srinivas et al., their own scheme can work only when there is one and only one cluster/fiying zone and is not scalable. Moreover, despite their claim of robustness, the investigation in this paper reveals that Srinivas et al.'s scheme cannot resist traceability and stolen verifier attacks. Using the lightweight symmetric key primitives and temporal credentials, an improved scheme (iTCALAS) is then proposed. The proposed scheme while maintaining the lightweightness provides security against many known attacks including traceability and stolen verifier. The proposed iTCALAS extends scalability and can work when there are several fiying zone/clusters in the IoD environment. The formal security proof along with automated verification using ProVerif show robustness of proposed iTCALAS. Moreover, the security discussion and performance comparisons show that the iTCALAS provides the known security features and completes authentication in just 2:295 ms
机译:无人机互联网(IOD)的意义正在稳步增加,现在在许多军用和平民的应用中正在实施IOD。 IOD利用当前蜂窝网络促进了对用户的实时数据访问,尤其是智能城市中的监控数据。然而,由于通信通道和电池操作的开放性,无人机收集的无人机和敏感数据都受到许多安全威胁。为了应对安全挑战,最近,Srinivas等人。提出了一种用于IOD网络的基于时间凭证的匿名轻量级认证方案(TCALAS)。与Srinivas等人提出的IOD监测框架相反,他们自己的方案只能在有一个且只有一个集群/火影区并且不可扩展时工作。此外,尽管他们的鲁棒性索赔,本文的调查揭示了Srinivas等人。的计划不能抵抗可追溯性和偷窃验证者攻击。使用轻量级对称密钥基元和时间凭证,提出了一种改进的方案(ITCalas)。在保持轻质性的同时提出的方案为许多已知攻击提供了安全性,包括可追溯性和盗窃者。建议的ITCalas扩展了可扩展性,并且在IOD环境中有几个电影区/群集时可以工作。正式的安全证明以及使用纤维蛋白的自动验证表现出提出的ITCalas的鲁棒性。此外,安全讨论和性能比较表明,ITCalas提供了已知的安全功能,并在仅2:295毫秒中完成身份验证

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