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Frontiers of Information Technology & Electronic Engineering

ISSN 2095-9184 (print), ISSN 2095-9230 (online)

Transmission design for the XL-RIS-aided massive MIMO system with visibility regions

Abstract: This study proposes a two-timescale transmission scheme for extremely large-scale reconfigurable intelligent surface aided (XL-RIS-aided) massive multi-input multi-output (MIMO) systems in the presence of visibility regions (VRs). The beamforming of base stations (BSs) is designed based on rapidly changing instantaneous channel state information (CSI), while the phase shifts of RIS are configured based on slowly varying statistical CSI. Specifically, we first formulate a system model with spatially correlated Rician fading channels and introduce the concept of VRs. Then, we derive a closed-form approximate expression for the achievable rate and analyze the impact of VRs on system performance and computational complexity. Then, we solve the problem of maximizing the minimum user rate by optimizing the phase shifts of RIS through an algorithm based on accelerated gradient ascent. Finally, we present numerical results to validate the performance of the considered system from different aspects and reveal the low system complexity of deploying XL-RIS in massive MIMO systems with the help of VRs.

Key words: Reconfigurable intelligent surface; Massive multi-input multi-output (MIMO); Two-timescale transmission scheme; Visibility regions

Chinese Summary  <13> 具有可见区域的超大规模RIS辅助大规模MIMO系统传输方案设计

李卢初1,潘存华1,支康达2,任红1
1东南大学信息科学与工程学院,中国南京市,210096
2柏林工业大学电子工程与计算机科学学院,德国柏林,10623
摘要:本研究提出一种基于可见区域的超大规模可重构智能表面辅助大规模多输入多输出系统的双时间尺度传输方案。在此方案中,基站的波束成形是基于快速变化的瞬时信道状态信息设计的,而可重构智能表面的相位偏移则是基于缓慢变化的统计信道状态信息配置的。具体而言,首先建立了一个包含空间相关莱斯衰落信道的系统模型,并引入了可见区域的概念。然后,推导了可实现速率的闭式近似表达式,并分析了可见区域对系统性能和计算复杂度的影响。接着,通过基于加速梯度上升的算法优化可重构智能表面的相位偏移,解决了最大化最小用户速率的问题。最后,展示了数值结果,验证了所考虑系统在不同方面的性能,并揭示了在可见区域理论的帮助下,部署超大规模可重构智能表面在大规模多输入多输出系统中的低系统复杂度。

关键词组:可重构智能表面;大规模多输入多输出;双时间尺度传输方案;可见区域


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DOI:

10.1631/FITEE.2400375

CLC number:

TN928

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On-line Access:

2025-01-24

Received:

2024-05-10

Revision Accepted:

2025-01-24

Crosschecked:

2024-10-27

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