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Authentication and Key Management in an LTE-Based Unmanned Aerial System Control and Non-payload Communication Network

机译:基于LTE的无人机系统控制和非有效载荷通信网络中的认证和密钥管理

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UA (Unmanned Aircraft) technology has rapidly advanced and its civilian applications such as public safety, research operation, and agricultural operation have been employed. To securely integrate the UAs into the general airspace, a reliable link to control and monitor those UAs is essentially required. The link between a UA and its GCS (Ground Control Station) is referred to as the CNPC (Control and Non-Payload Communication) link and the network including UAs and GCS is referred to as the integrated CNPC network. The CNPC link may include a terrestrial network such as the LTE (Long Term Evolution) and the terrestrial network connects a UA to a GCS. In this paper, we propose a communication architecture to integrate the LTE technology into the integrated CNPC network and defines the security requirements of the communication architecture. Then, we modify an authentication and key agreement protocol and handover key management protocols for the network. We compare the modified protocols with LTE counterpart protocols. Our comparison shows that the modified protocols outperforms the LTE counterpart protocols in terms of security while it induces almost the same volume of communication overhead. Our future work is to do a series of simulations to evaluate the performance and security of our protocols rigorously.
机译:UA(无人飞机)技术已迅速发展,其民用应用(例如公共安全,研究运营和农业运营)已得到采用。为了将UA安全地集成到一般空域中,基本需要可靠的链接来控制和监视这些UA。 UA及其GCS(地面控制站)之间的链接称为CNPC(控制和非有效载荷通信)链接,而包含UA和GCS的网络称为集成的CNPC网络。 CNPC链路可以包括诸如LTE(长期演进)之类的地面网络,并且该地面网络将UA连接到GCS。在本文中,我们提出了一种将LTE技术集成到集成的CNPC网络中的通信体系结构,并定义了该通信体系结构的安全性要求。然后,我们修改网络的身份验证和密钥协商协议以及移交密钥管理协议。我们将修改后的协议与LTE对应协议进行了比较。我们的比较表明,修改后的协议在安全性方面胜过LTE对应协议,同时却引起了几乎相同数量的通信开销。我们未来的工作是进行一系列模拟,以严格评估协议的性能和安全性。

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