论文标题

杂交模拟/数字预编码用于下行链路大规模MIMO LEO卫星通信

Hybrid Analog/Digital Precoding for Downlink Massive MIMO LEO Satellite Communications

论文作者

You, Li, Qiang, Xiaoyu, Li, Ke-Xin, Tsinos, Christos G., Wang, Wenjin, Gao, Xiqi, Ottersten, Björn

论文摘要

大量的多输入多输出(MIMO)对于低地球轨道(LEO)卫星通信有望有望,因为潜力提高了光谱效率。但是,常规的完全数字编码架构可能会导致较高的实施复杂性和能源消耗。在本文中,通过利用发射机的慢变化统计通道状态信息(CSI)来开发用于LEO Massive Mimo卫星通信中的下行链路操作的混合模拟/数字预编码解决方案。首先,我们通过考虑实现模拟预编码器的连续和离散相移网络,将混合预编码器设计作为能量效率(EE)最大化问题。考虑了完全连接的架构的情况。由于EE优化问题是非convex,因此通常难以解决。为了使EE最大化问题可解决,我们将封闭形式的紧密上限应用于近似值。然后,我们开发了一种有效的算法来获得完全数字的预编码器。基于这些,我们进一步开发了两种不同的有效算法解决方案,以分别计算完全连接的结构和部分连接的混合编码器。仿真结果表明,所提出的方法在现有基准方面获得了显着的EE性能提高,尤其是当使用离散的相移网络进行模拟预编码时。

Massive multiple-input multiple-output (MIMO) is promising for low earth orbit (LEO) satellite communications due to the potential in enhancing the spectral efficiency. However, the conventional fully digital precoding architectures might lead to high implementation complexity and energy consumption. In this paper, hybrid analog/digital precoding solutions are developed for the downlink operation in LEO massive MIMO satellite communications, by exploiting the slow-varying statistical channel state information (CSI) at the transmitter. First, we formulate the hybrid precoder design as an energy efficiency (EE) maximization problem by considering both the continuous and discrete phase shift networks for implementing the analog precoder. The cases of both the fully and the partially connected architectures are considered. Since the EE optimization problem is nonconvex, it is in general difficult to solve. To make the EE maximization problem tractable, we apply a closed-form tight upper bound to approximate the ergodic rate. Then, we develop an efficient algorithm to obtain the fully digital precoders. Based on which, we further develop two different efficient algorithmic solutions to compute the hybrid precoders for the fully and the partially connected architectures, respectively. Simulation results show that the proposed approaches achieve significant EE performance gains over the existing baselines, especially when the discrete phase shift network is employed for analog precoding.

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