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首页> 外文期刊>IEEE Transactions on Communications >Large-Scale-Fading Decoding in Cellular Massive MIMO Systems With Spatially Correlated Channels
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Large-Scale-Fading Decoding in Cellular Massive MIMO Systems With Spatially Correlated Channels

机译:具有空间相关通道的蜂窝大规模MIMO系统中大规模衰落的解码

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摘要

Massive multiple-input-multiple-output (MIMO) systems can suffer from coherent intercell interference due to the phenomenon of pilot contamination. This paper investigates a two-layer decoding method that mitigates both coherent and non-coherent interference in multi-cell Massive MIMO. To this end, each base station (BS) first estimates the channels to intra-cell users using either minimum mean-squared error (MMSE) or element-wise MMSE estimation based on uplink pilots. The estimates are used for local decoding on each BS followed by a second decoding layer where the BSs cooperate to mitigate inter-cell interference. An uplink achievable spectral efficiency (SE) expression is computed for arbitrary two-layer decoding schemes. A closed form expression is then obtained for correlated Rayleigh fading, maximum-ratio combining, and the proposed large-scale fading decoding (LSFD) in the second layer. We also formulate a sum SE maximization problem with both the data power and LSFD vectors as optimization variables. Since this is an NP-hard problem, we develop a low-complexity algorithm based on the weighted MMSE approach to obtain a local optimum. The numerical results show that both data power control and LSFD improve the sum SE performance over single-layer decoding multi-cell Massive MIMO systems.
机译:由于飞行员污染现象,巨大的多输入 - 多输出(MIMO)系统可能遭受连贯的Intercell干扰。本文研究了两层解码方法,其减轻了多细胞大量MIMO中的相干和非相干干扰。为此,每个基站(BS)首先使用基于上行链路导频的最小平均平方误差(MMSE)或元素-Wise MMSE估计来估计到小区内用户的信道。估计用于对每个BS的局部解码,然后是第二解码层,其中BSS协作以减轻小区间干扰。为任意双层解码方案计算上行链路可实现的频谱效率(SE)表达式。然后获得闭合形式表达式,用于相关的瑞利渐变,最大比率组合,以及第二层中所提出的大规模衰落解码(LSFD)。我们还使用数据功率和LSFD向量作为优化变量制定了SUM SE最大化问题。由于这是一个NP难的问题,我们基于加权MMSE方法开发一种低复杂性算法,以获得局部最佳方法。数值结果表明,数据功率控制和LSFD在单层解码多电池大量MIMO系统上提高了SE SE性能。

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