Aljumah Abdullah
College of Computer Engineering and Sciences, Prince Sattam Bin Abdulaziz University, Al-Kharj 11942, Saudi Arabia.
Sensors (Basel). 2024 Feb 3;24(3):996. doi: 10.3390/s24030996.
An Internet of Things (IoT) system for managing and coordinating unmanned aerial vehicles (UAVs) has revolutionized the industrial sector. The largest issue with the design of the Internet of UAVs (IoUAV) is security. Conspicuously, the novel contribution of the proposed work is to develop a layered authentication approach to facilitate safe IoUAV communication. Specifically, four modules, including the pre-deployment module, user registration module, login module, and authentication module, form the basis of security analysis. In the proposed technique, UAVs are added to the IoUAV registry. The next step is the user registration module, where people are registered with the UAV so they may access the information in real time. In the login module, the user connects with the server for data transmission. Finally, in the authentication module, all entities, including users, servers, and UAVs, are authenticated to ensure secure data communication. The proposed method achieves peak performance as compared to the state-of-the-art techniques in terms of statistical parameters of latency (3.255s), throughput (90.15%), and packet loss (8.854%).
一种用于管理和协调无人机(UAV)的物联网(IoT)系统彻底改变了工业领域。无人机物联网(IoUAV)设计中最大的问题是安全性。值得注意的是,所提出工作的新颖贡献在于开发一种分层认证方法,以促进安全的IoUAV通信。具体而言,四个模块,包括预部署模块、用户注册模块、登录模块和认证模块,构成了安全分析的基础。在所提出的技术中,无人机被添加到IoUAV注册表中。下一步是用户注册模块,人们在该模块中向无人机注册,以便他们可以实时访问信息。在登录模块中,用户与服务器连接以进行数据传输。最后,在认证模块中,对包括用户、服务器和无人机在内的所有实体进行认证,以确保安全的数据通信。与现有技术相比,所提出的方法在延迟(3.255秒)、吞吐量(90.15%)和丢包率(8.854%)等统计参数方面实现了最佳性能。