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A smart lightweight privacy preservation scheme for IoT-based UAV communication systems

机译:基于IOT的UAV通信系统的智能轻质隐私保存方案

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Unmanned Aerial Vehicle (UAV) has extensively been practiced in the military and civilian surveillance systems that access sensitive data over the cellular networks. However, channel insecurity and battery limitation may not protect the aerial coverage area. Thus, sensitive information gathered through aerial vehicles causes security threats. To manage the security issues, Smart Internet of Drone (S-IoD) have been evolved to use Intelligent Personal Assistant (IPA) as a software agent while monitoring and observing areas of interest. The current state-of-the-art technologies provide ubiquitous communication to enable several Internet of Things (IoT) paradigms. It achieves a feature of a decision support system that allows the smart interaction and communication between real-time entities. IPA offers smart interaction with other smart real-time entities to gain the user's knowledge and awareness. This paper presents an S-IoD framework for a UAV environment that independently collects sensible information. In order to reduce the computation cost of the authentication protocol, a lightweight privacy-preserving scheme (L-PPS) is introduced. The proposed L-PPS is constructive to provide the robustness between the IoT devices with a valid authentication period. To demonstrate the security and performance efficiencies, the formal verification was performed using a verification tool, Scyther, and a random oracle model. In addition, the proposed L-PPS introduces a secret token and dynamic user authentication to speed up the authentication process between the communication entities. Importantly, the authentication session of L-PPS does not use any complex cryptographic operations, whereby it has less computation and communication costs to meet the standard constraints of surveillance systems. Moreover, the obtained simulation analysis proves that the proposed L-PPS achieves better quality metrics than other authentication schemes in the literature.
机译:无人驾驶航空公司(UAV)在军事和平民监控系统中广泛实施,该系统在蜂窝网络上访问敏感数据。但是,通道不安全和电池限制可能不会保护空中覆盖区域。因此,通过空中车辆收集的敏感信息导致安全威胁。为了管理安全问题,已经进化了智能无人机(S-IOD),以便在监控和观察感兴趣的区域时使用智能个人助理(IPA)作为软件代理。目前的最先进的技术提供了无处不在的通信,以实现几个物联网(物联网)范式。它达到了决策支持系统的特征,其允许实时实体之间的智能交互和通信。 IPA提供与其他智能实时实体的智能互动,以获得用户的知识和意识。本文为无人机环境提供了一个S-IOD框架,可独立收集合理信息。为了降低认证协议的计算成本,介绍了一种轻量级隐私保留方案(L-PPS)。所提出的L-PPS是建设性的,以提供具有有效认证时段的IOT设备之间的稳健性。为了展示安全性和性能效率,使用验证工具,SCYTHER和随机oracle模型进行正式验证。此外,所提出的L-PPS引入了秘密令牌和动态用户身份验证,以加快通信实体之间的认证过程。重要的是,L-PPS的认证会话不使用任何复杂的加密操作,从而具有较少的计算和通信成本,以满足监控系统的标准约束。此外,所获得的仿真分析证明,所提出的L-PPS比文献中的其他认证方案实现了更好的质量指标。

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