This paper investigates the uplink space division multiple access in a satellite-aerial-terrestrial network, where multiple users access to satellite with the aid of a unmanned aerial vehicle, and the two hops adopt radio frequency (RF) and free space optical (FSO), respectively. We first formulate an optimization problem to maximize the ergodic sum rate (ESR) of the considered system. Then a statistical channel state information (CSI)-based beamforming (BF) scheme is proposed to solve the non-convex ESR maximization problem. The main advantage of the proposed method is that only statistical CSI is used to obtain BF vectors so that a low implementation complexity can be achieved. Then, by assuming that the RF and FSO links undergo Nakagami-m and Gamma-Gamma fading, respectively, closed-form expression for ESR of the considered system is derived. Simulation results validate the derived expression and confirm the effectiveness of the proposed BF scheme.
Qingquan HuangMin LinWei‐Ping ZhuJulian ChengMohamed‐Slim Alouini
Yuanyuan MaTiejun LvGaofeng PanYunfei ChenMohamed‐Slim Alouini
Xiaoyu LiuMin LinWei‐Ping ZhuJin‐Yuan WangPrabhat K. Upadhyay
Xiaoyu LiuMin LinHuaicong KongJian OuyangWei‐Ping Zhu
Yuanyuan MaZhan XuLu TianRuxin ZhiXuhui DingXiangyuan Bu