In this paper, we consider an imperfect hardware hybrid satellite-terrestrial network (HSTN) where the satellite communication with a ground user equipment (UE) is aided by the multiple amplify-and-forward (AF) three-dimensional ($3$D) mobile unmanned aerial vehicle (UAV) relays. Herein, we consider that all transceiver nodes are corrupted by the radio frequency hardware impairments (RFHI). Further, a stochastic mixed mobility (MM) model is employed to characterize the instantaneous location of $3$D mobile UAV relays in a cylindrical cell with UE lying at its center on ground plane. Taking into account the aggregate RFHI model for satellite and UAV relay transceivers and the random $3$D distances-based path loss for UAV relay-UE links, we investigate the outage probability (OP) and corresponding asymptotic outage behaviour of the system under an opportunistic relay selection scheme in a unified form for shadowed-Rician satellite links' channels and Nakagami-\emph{m} as well as Rician terrestrial links' channels. We corroborate theoretical analysis by simulations.
翻译:在本文中,我们考虑了一个不完善的硬件混合卫星-地球网络(HSTN),与地面用户设备(UE)的卫星通信得到了三维(3美元)移动式无人驾驶飞行器(UAV)继电器(AF)的辅助。在这里,我们认为所有收发器节点都受到射频硬件损伤(RFHI)的腐蚀。此外,还采用了一种随机混合移动(MMM)模式,将3美元D移动式UAV中继器的瞬时位置定位在一个以UE为中心的圆柱形电池中。考虑到卫星和UAV中继式收发机的RFHI综合模型和UAV中继器链接的3美元(D)远距离路径随机损失。我们根据一种机会式中继器选择计划,以统一的形式对系统断电概率(OP)和相应的静电流出场行为进行了研究。我们用模拟的理论分析。