This paper investigates the theoretical basis for using ground relaying in multi-antenna satellites exposed to blocking situations. Inactive and unobstructed User Equipments (UEs) located on ground are the relaying nodes of UEs that are not in the field of view of the satellite. Exact closed-form relationships of the Signal-to-Noise Ratio (SNR) and the outage probability are obtained for the case where each user is connected to two transmitting antennas at the satellite. The channel between the satellite and ground is modeled as a shadowed-Rician (SR), whereas a Fluctuating Two-Ray (FTR) fading model is used for the mmWaves ground link between relay and UE, as well as cases with perfect and imperfect Channel State Information (CSI). The simulation results showed that if perfect CSI is not available in the pre-coding and only the signal phase is estimated, the performance loss is minimal and the system can reach its ideal performance by spending limited power. In any case, the closed-form for the ideal state are a good proxy to predict the performance under non-ideal conditions.
翻译:本文调查了在面临阻塞情况的多屏蔽卫星中使用地面中继的理论基础。地面上不活跃和不受阻碍的用户设备(UES)是不在卫星视野范围内的UES的中继节点。信号对噪音比率(SNR)的封闭式关系和每个用户与卫星两台传输天线连接的情况下的断裂概率是准确的。卫星与地面之间的信道以影子里西亚(SR)为模范,而双射线(FTR)淡化模型则用于中继和UE之间的毫米瓦夫地面连接,以及频道国家信息(CSI)的完美和不完善。模拟结果表明,如果在预编码中无法提供完美的CSI,而且只有信号阶段是估计的,那么性能损失是最小的,而系统可以通过耗用有限的力量达到理想的性能。无论如何,理想状态的封闭式是预测非理想状态下性能的良好替代物。