MIMO-OFDM系统中无反馈多基站传输的全解耦RAN

IF 17.2
Yunting Xu;Zongxi Liu;Bo Qian;Hongyang Du;Jiacheng Chen;Jiawen Kang;Haibo Zhou;Dusit Niyato
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引用次数: 0

摘要

协同多基站(BS)传输已成为增强网络能力和提高频谱效率的基本接入技术。然而,信道状态信息(CSI)的计算密集型反馈对确定协调BSs的物理层参数提出了重大挑战。在本文中,我们研究了一种无反馈机制,该机制利用固定预编码矩阵指标(PMI)、秩指标(RI)和信道质量指标(CQI)在完全解耦的无线接入网(FD-RAN)上进行协调的BS传输。为了在没有CSI反馈的情况下最大化用户设备(UE)吞吐量,我们仅通过UE地理位置计算跨空间、频率和时间域的最佳无反馈参数。首先,为了确定空间域的MIMO传输层和预编码策略,我们引入了分层强化学习(HRL)框架来联合选择协同BSs的PMI和RI。随后,为了设计更细粒度的子带传输,使用变压器模块捕获OFDM符号内的子载波相关性。最后,考虑到不可预测的通道变化,我们利用扩散模型在时变网络上为固定PMI、RI和CQI生成具有代表性的通道。仿真结果表明,与1 BS CLSM传输相比,2 BS无反馈传输可提高13%的吞吐量,为下一代收发器技术提供了设计原则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fully-Decoupled RAN for Feedback-Free Multi-Base Station Transmission in MIMO-OFDM System
Coordinated multi-base station (BS) transmission has emerged as a fundamental access technology to augment network capability and improve spectrum efficiency. However, the computation-intensive feedback of channel state information (CSI) poses significant challenges in determining physical-layer parameters for coordinated BSs. In this paper, we investigate a feedback-free mechanism that leverages fixed precoding matrix indicator (PMI), rank indicator (RI), and channel quality indicator (CQI) for coordinated BS transmission over a fully-decoupled radio access network (FD-RAN). Aiming to maximize user equipment (UE) throughput without CSI feedback, we calculate an optimal feedback-free parameter across spatial, frequency, and time domains only through UE geolocations. First, to determine MIMO transmission layer and precoding strategy in the spatial domain, we introduce a hierarchical reinforcement learning (HRL) framework to jointly select PMI and RI for coordinated BSs. Subsequently, for designing a more fine-grained subband transmission, transformer module is employed to capture the subcarrier correlations within OFDM symbols. Finally, given the unpredictable channel variations, we leverage a diffusion model to generate representative channel for fixed PMI, RI, and CQI over time-varied networks. Simulations demonstrate that 2 BSs feedback-free transmission can enhance 13% throughput compared with 1 BS CLSM transmission, which provides a design principle for next-generation transceiver technologies.
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