We study a high throughput satellite system, where the feeder link uses free-space optical (FSO) and the user link uses radio frequency (RF) communication. In particular, we first propose a transmit diversity using Alamouti space time block coding to mitigate the atmospheric turbulence in the feeder link. Then, based on the concept of average virtual signal-to-interference-plus-noise ratio and one-bit feedback, we propose a beamforming algorithm for the user link to maximize the ergodic capacity (EC). Moreover, by assuming that the FSO links follow the Malaga distribution whereas RF links undergo the shadowed-Rician fading, we derive a closed-form EC expression of the considered system. Finally, numerical simulations validate the accuracy of our theoretical analysis, and show that the proposed schemes can achieve higher capacity compared with the reference schemes.
翻译:我们研究的是高吞吐卫星系统,在该系统中,支线连接使用自由空间光学(FSO)和用户链接使用无线电频率(RF)通信;特别是,我们首先提议使用Alamouti空间时间区块编码传输多样性,以缓解支线连接中的大气动荡;然后,根据平均虚拟信号对干涉加噪音比率和一位反馈的概念,我们提出用户链接的波形算法,以尽量扩大ERGodic能力(EC)。此外,假设FSO链接采用Malaga分布,而RF链接采用阴影-Rician淡化,我们得出了所考虑的系统封闭式EC表达方式。最后,数字模拟验证了我们理论分析的准确性,并表明拟议的计划与参考计划相比能够实现更高的能力。