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Two-Layer Decoding in Cellular Massive MIMO Systems with Spatial Channel Correlation

机译:空间通道相关性蜂窝大规模MIMO系统中的两层解码

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This paper studies a two-layer decoding method that mitigates inter-cell interference in multi-cell Massive MIMO systems. In layer one, each base station (BS) estimates the channels to intra-cell users and uses the estimates 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, while a closed-form expression is obtained for correlated Rayleigh fading channels, maximum-ratio combining (MRC), and large-scale fading decoding (LSFD) in the second layer. We formulate a non-convex sum SE maximization problem with both the data power and LSFD vectors as optimization variables and develop an algorithm based on the weighted MMSE (minimum mean square error) approach to obtain a stationary point with low computational complexity.
机译:本文研究了一种双层解码方法,其减轻了多电池大量MIMO系统中的细胞间干扰。在第一层中,每个基站(BS)估计到小区内用户的信道,并使用对每个BS的局部解码的估计,然后是BSS协作以减轻小区间干扰的第二解码层。计算可实现的频谱效率(SE)表达式,用于任意双层解码方案,而获取闭合表达式的相关性瑞利衰落通道,最大比率组合(MRC),以及大规模衰落解码(LSFD)。在第二层。我们用数据功率和LSFD向量制定非凸和SE最大化问题,作为优化变量,并基于加权MMSE(最小均方误差)方法开发算法,以获得具有低计算复杂度的静止点。

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