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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Structured Massive Access for Scalable Cell-Free Massive MIMO Systems
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Structured Massive Access for Scalable Cell-Free Massive MIMO Systems

机译:可缩放无电池大规模MIMO系统的结构型大型通道

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摘要

How to meet the demand for increasing number of users, higher data rates, and stringent quality-of-service (QoS) in the beyond fifth-generation (B5G) networks? Cell-free massive multiple-input multiple-output (MIMO) is considered as a promising solution, in which many wireless access points cooperate to jointly serve the users by exploiting coherent signal processing. However, there are still many unsolved practical issues in cell-free massive MIMO systems, whereof scalable massive access implementation is one of the most vital. In this paper, we propose a new framework for structured massive access in cell-free massive MIMO systems, which comprises one initial access algorithm, a partial large-scale fading decoding (P-LSFD) strategy, two pilot assignment schemes, and one fractional power control policy. New closed-form spectral efficiency (SE) expressions with maximum ratio (MR) combining are derived. The simulation results show that our proposed framework provides high SE when using local partial minimum mean-square error (LP-MMSE) and MR combining. Specifically, the proposed initial access algorithm and pilot assignment schemes outperform their corresponding benchmarks, P-LSFD achieves scalability with a negligible performance loss compared to the conventional optimal large-scale fading decoding (LSFD), and scalable fractional power control provides a controllable trade-off between user fairness and the average SE.
机译:如何满足越来越多的用户数量,更高的数据速率和严格的服务质量(QoS)的需求(B5G)网络?无细胞大规模多输入多输出(MIMO)被认为是有希望的解决方案,其中许多无线接入点通过利用相干信号处理来共同为用户共同服务。然而,无细胞大规模MIMO系统中仍有许多未解决的实际问题,其中可扩展的大规模访问实现是最重要的一个。在本文中,我们提出了一种在无细胞大规模MIMO系统中的结构化大规模访问的新框架,其包括一个初始接入算法,部分大规模衰落解码(P-LSFD)策略,两个导频分配方案和一个分数权力控制策略。推导出具有最大比率(MR)组合的新闭合谱效率(SE)表达。仿真结果表明,当使用本地部分最小均方误差(LP-MMSE)和组合MR组合时,我们所提出的框架提供高级。具体地,所提出的初始接入算法和导频分配方案优于它们对应的基准,与传统的最佳大规模衰落解码(LSFD)相比,P-LSFD实现了具有可忽略的性能损耗的可扩展性,并且可伸缩的分数功率控制提供可控的交易 - 在用户公平和平均se之间关闭。

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