This paper investigates the covert communication in an air-to-ground (A2G) system, where a UAV (Alice) can adopt the omnidirectional microwave (OM) or directional mmWave (DM) transmission mode to transmit covert data to a ground user (Bob) while suffering from the detection of an adversary (Willie). For both the OM and DM modes, we first conduct theoretical analysis to reveal the inherent relationship between the transmit rate/transmit power and basic covert performance metrics in terms of detection error probability (DEP), effective covert rate (ECR), and covert Shannon capacity (CSC). To facilitate the transmission mode selection at Alice, we then explore the optimization of transmit rate and transmit power for ECR/CSC maximization under the OM and DM modes, and further propose a hybrid OM/DM transmission mode which allows the UAV to adaptively select between the OM and DM modes to achieve the maximum ECR and CSC at a given location of UAV. Finally, extensive numerical results are provided to illustrate the covert performances of the concerned A2G system under different transmission modes, and demonstrate that the hybrid OM/DM transmission mode outperforms the pure OM or DM mode in terms of covert performance.
翻译:本文件对空对地系统(A2G)的隐蔽通信进行了调查,在这种系统中,无人驾驶航空器(Alis)可采用全向微波(OM)或定向毫米Wave(DM)传输模式,向地面用户(Bob)传输隐蔽数据,同时受到发现敌机(Willie)的困扰。对于OM和DM模式,我们首先进行理论分析,以揭示传输率/传输力与基本隐蔽性能衡量标准之间的内在关系,即检测误差概率(DEP)、有效隐蔽率(ECR)和香农能力(CSC)。为便利爱丽丝的传输模式选择,我们随后探索在OM和DM模式下优化传输速率和将ECR/CSC最大化的能量传递给地面用户(Bob),并进一步提议混合OM/DM传输模式,使无人驾驶航空器能够在UAV的某个特定地点灵活选择OM模式和CSC,以达到最大ECR和CSC。最后,提供了广泛的数字结果,以说明有关A2G系统的隐蔽性性表现为不同模式/MDMDM格式。