论文标题

智能反映表面辅助的狮子座卫星通信:合作的被动边界和分布式频道估计

Intelligent Reflecting Surface-Aided LEO Satellite Communication: Cooperative Passive Beamforming and Distributed Channel Estimation

论文作者

Zheng, Beixiong, Lin, Shaoe, Zhang, Rui

论文摘要

我们在本文中考虑了一种新的智能反射表面(IRS)列奥卫星通信系统,通过利用大量被动反射元件的可控相移以实现灵活的光束形成,并以成本效率地与高机动性卫星(SAT)和地面节点(SAT)和接地节点(SAT)和地面节点(GN)之间的时间变化。特别是,我们为IRS辅助的LEO卫星通信提供了一种新的体系结构,在SAT和GN的两侧部署了IRS,并研究了他们的合作无源式波束(CPB)设计,而不是通过(LOS)占主导地位(LOS)的单次反射和双重反射通道。具体而言,我们在SAT/GN以及在双面IRSS处共同优化了主动传输/接收光束形成,以最大化从SAT到每个GN的总体通道增益。有趣的是,我们表明,在LOS通道条件下,高维SAT-GN通道可以分解为两个低维矢量的外产物。通过利用分解的SAT-GN通道,我们将原始波束形成优化问题分别分别为两个对应于SAT和GN侧的简单子问题,它们都以封闭形式求解。此外,我们提出了一种有效的传输协议来进行通道估计和光束跟踪,这仅需要以分布式方式独立处理SAT和GN,从而大大降低了实现复杂性。与各种基线方案(如常规的反射阵列和单方面的IRS)相比,模拟结果验证了拟议的IRS辅助LEO卫星通信系统的性能优势。

We consider in this paper a new intelligent reflecting surface (IRS)-aided LEO satellite communication system, by utilizing the controllable phase shifts of massive passive reflecting elements to achieve flexible beamforming, which copes with the time-varying channel between the high-mobility satellite (SAT) and ground node (GN) cost-effectively. In particular, we propose a new architecture for IRS-aided LEO satellite communication where IRSs are deployed at both sides of the SAT and GN, and study their cooperative passive beamforming (CPB) design over line-of-sight (LoS)-dominant single-reflection and double-reflection channels. Specifically, we jointly optimize the active transmit/receive beamforming at the SAT/GN as well as the CPB at two-sided IRSs to maximize the overall channel gain from the SAT to each GN. Interestingly, we show that under LoS channel conditions, the high-dimensional SAT-GN channel can be decomposed into the outer product of two low-dimensional vectors. By exploiting the decomposed SAT-GN channel, we decouple the original beamforming optimization problem into two simpler subproblems corresponding to the SAT and GN sides, respectively, which are both solved in closed-form. Furthermore, we propose an efficient transmission protocol to conduct channel estimation and beam tracking, which only requires independent processing of the SAT and GN in a distributed manner, thus substantially reducing the implementation complexity. Simulation results validate the performance advantages of the proposed IRS-aided LEO satellite communication system with two-sided cooperative IRSs, as compared to various baseline schemes such as the conventional reflect-array and one-sided IRS.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源