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A Robot Operating System Framework for Secure UAV Communications
DOI:10.3390/s21041369.png)
摘要
En 中文
To perform advanced operations with unmanned aerial vehicles (UAVs), it is crucial that components other than the existing ones such as flight controller, network devices, and ground control station (GCS) are also used. The inevitable addition of hardware and software to accomplish UAV operations may lead to security vulnerabilities through various vectors. Hence, we propose a security framework in this study to improve the security of an unmanned aerial system (UAS). The proposed framework operates in the robot operating system (ROS) and is designed to focus on several perspectives, such as overhead arising from additional security elements and security issues essential for flight missions. The UAS is operated in a nonnative and native ROS environment. The performance of the proposed framework in both environments is verified through experiments.
Keyword:
unmanned aerial vehicles
cyber-physical systems
network attack
security
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期刊
IF:
3.5
论文数:
7.2W
被引数:
20.9W
机构
暂无机构信息
引用论文
Empirical Analysis of MAVLink Protocol Vulnerability for Attacking Unmanned Aerial Vehicles
IEEE ACCESS
IF3.6
Secrecy Performance Analysis of Air-to-Ground Communication With UAV Jitter and Multiple Random Walking Eavesdroppers无人机抖动和多随机游走窃听的空地通信保密性能分析
Seroprevalence of Toxoplasma gondii infection in sows and finishers from conventional and organic herds in Denmark: Implications for potential future serological surveillance丹麦常规和有机畜群中母猪和终结者弓形虫感染的血清阳性率: 对未来潜在血清学监测的影响

