面向多用户下行波束形成的可重构振幅和相位叠加智能元表面设计

IF 6.3 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Open Journal of the Communications Society Pub Date : 2025-01-03 DOI:10.1109/OJCOMS.2025.3526126
Donatella Darsena;Francesco Verde;Ivan Iudice;Vincenzo Galdi
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引用次数: 0

摘要

近年来出现了一种基于堆叠智能元表面(SIM)的新技术。该平台涉及级联多个超表面,每个超表面都充当衍射神经网络中的数字可编程物理层。SIM能够直接在电磁波域中实现信号处理转换,从而消除了对昂贵、高精度和功耗高的数字平台的需求。然而,在无线通信应用中使用SIM的现有研究仅依赖于几乎无源的结构,该结构仅控制每层元原子的相位。在本研究中,我们提出了一种SIM辅助下行多用户传输方案,其中基站(BS)端的SIM通过结合具有纯相位重构能力的近无源层和集成了放大器芯片的有源层来实现幅度控制来设计。我们的优化设计旨在通过联合优化BS的发射功率分配和SIM的基于波的波束形成来最大化最佳用户群的总和速率。除了BS的标准和功率约束外,我们的优化框架还包括两个额外的约束:(i)每个流功率保持约束,以防止SIM间的传播损耗,以及(ii)幅度约束,以考虑每个有源层的功率限制。为了进一步降低最佳波束形成方案的复杂性,我们探索了一种简单但次优的零强迫(ZF)波束形成设计,其中选择由SIM实现的基于波的变换来消除用户流之间的干扰。最后,广泛的蒙特卡罗模拟表明,与之前报道的纯相位编码SIM相比,在SIM中合并近无源层和有源层显着提高了容量。此外,数值结果表明,即使对于相对较少的用户,低复杂度的ZF波束形成在最大和速率方面也接近最优。
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Design of Stacked Intelligent Metasurfaces With Reconfigurable Amplitude and Phase for Multiuser Downlink Beamforming
A novel technology based on stacked intelligent metasurfaces (SIM) has recently emerged. This platform involves cascading multiple metasurfaces, each acting as a digitally programmable physical layer within a diffractive neural network. SIM enable the implementation of signal-processing transformations directly in the electromagnetic wave domain, eliminating the need for expensive, high-precision, and power-intensive digital platforms. However, existing studies employing SIM in wireless communication applications rely solely on nearly passive structures that control only the phase of the meta-atoms in each layer. In this study, we propose a SIM-aided downlink multiuser transmission scheme, where the SIM at the base station (BS) end is designed by combining nearly passive layers with phase-only reconfiguration capabilities and active layers integrated with amplifier chips to enable amplitude control. Our optimal design aims at maximizing the sum rate for the best group of users by jointly optimizing the transmit power allocation at the BS and the wave-based beamforming at the SIM. In addition to the standard sum-power constraint at the BS, our optimization framework includes two additional constraints: (i) a per-stream power preserving constraint to prevent propagation losses across the SIM, and (ii) an amplitude constraint to account for power limitations for each active layer. To further reduce the complexity of the optimal beamforming solution, we explore a simple yet suboptimal zero-forcing (ZF) beamforming design, where the wave-based transformation implemented by the SIM is selected to eliminate interference among user streams. Finally, extensive Monte Carlo simulations demonstrate that incorporating both nearly passive and active layers within the SIM significantly enhances capacity compared to previously reported phase-only coding SIM. Additionally, the numerical results reveal that low-complexity ZF beamforming approaches optimality in terms of maximum sum rate even for a relatively small number of users.
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来源期刊
CiteScore
13.70
自引率
3.80%
发文量
94
审稿时长
10 weeks
期刊介绍: The IEEE Open Journal of the Communications Society (OJ-COMS) is an open access, all-electronic journal that publishes original high-quality manuscripts on advances in the state of the art of telecommunications systems and networks. The papers in IEEE OJ-COMS are included in Scopus. Submissions reporting new theoretical findings (including novel methods, concepts, and studies) and practical contributions (including experiments and development of prototypes) are welcome. Additionally, survey and tutorial articles are considered. The IEEE OJCOMS received its debut impact factor of 7.9 according to the Journal Citation Reports (JCR) 2023. The IEEE Open Journal of the Communications Society covers science, technology, applications and standards for information organization, collection and transfer using electronic, optical and wireless channels and networks. Some specific areas covered include: Systems and network architecture, control and management Protocols, software, and middleware Quality of service, reliability, and security Modulation, detection, coding, and signaling Switching and routing Mobile and portable communications Terminals and other end-user devices Networks for content distribution and distributed computing Communications-based distributed resources control.
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