The massive multiple-input multiple-output (MIMO) transmission technology has recently attracted much attention in the non-geostationary, e.g., low earth orbit (LEO) satellite communication (SATCOM) systems since it can significantly improve the energy efficiency (EE) and spectral efficiency. In this work, we develop a hybrid analog/digital precoding technique in the massive MIMO LEO SATCOM downlink, which reduces the onboard hardware complexity and power consumption. In the proposed scheme, the analog precoder is implemented via a more practical twin-resolution phase shifting (TRPS) network to make a meticulous tradeoff between the power consumption and array gain. In addition, we consider and study the impact of the distortion effect of the nonlinear power amplifiers (NPAs) in the system design. By jointly considering all the above factors, we propose an efficient algorithmic approach for the TRPS-based hybrid precoding problem with NPAs. Numerical results show the EE gains considering the nonlinear distortion and the performance superiority of the proposed TRPS-based hybrid precoding scheme over the baselines.
翻译:大规模多投入多输出传输技术(MIMO)最近在非静止系统,例如低地轨道卫星通信系统(SATCOM)中引起了很大的注意,因为它可以大大提高能源效率和光谱效率。在这项工作中,我们在大型MIMO LEO SATCOM下行链中开发一种混合模拟/数字预编码技术,减少机载硬件的复杂程度和电力消耗。在拟议办法中,模拟前编码器通过一个更加实用的双分解阶段转换(TRPS)网络来实施,以便在电耗和阵列收益之间进行细致的交换。此外,我们考虑并研究非线性电放大器(NPAs)在系统设计中的扭曲效应的影响。通过共同考虑上述所有因素,我们提出了针对基于TRPS的混合预编码问题的有效算法方法。Numericalical的结果显示,考虑到拟议的TRPS混合前科计划在基线上的非线性扭曲和性能优势,EE的增益收益。