符号
卫星
数学记数法
算法
数学
计算机科学
域代数上的
工程类
纯数学
算术
航空航天工程
作者
Xiaqing Miao,Yunkang Liu,Haoxing Zhang,Hui Zhao,Wang Shuai,Gaofeng Pan,Jianping An
标识
DOI:10.1109/taes.2023.3323922
摘要
With the development of satellite communication technology, the application of satellites in the Internet of Vehicles (IoV) system can effectively solve the limitations and deficiencies of ground communication networks. In this paper, we investigate the security outage performance of a satellite-vehicle communication system consisting of a satellite ( $S$ ), a legitimate receiving vehicle ( $C$ ), and an eavesdropping vehicle ( $E$ ), where $C$ and $E$ are randomly located on two different roads within the coverage area of $S$ and randomly distributed on their respective roads. The downlink communication links between $S$ and these terrestrial vehicles are assumed to suffer the Shadowed-Rician fading. Then, the security outage probability (SOP) is studied under the most straightforward case that $ C$ and $E$ are equipped with a single antenna. Next, we extend to the more common scenario where both $C$ and $E$ adopt multiple antennas by deriving the analytical expression for the SOP. Finally, numerical results are presented to verify our proposed analytical models.
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