Design of Space-Time Multi-Block Codes for MIMO Systems with Linear MMSE Receivers

Jing Liu, T. Davidson, K. M. Wong
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引用次数: 2

Abstract

We consider a multi-input multi-output (MIMO) communication system equipped with a linear minimum mean-square error (MMSE) receiver. We design a full-rate linear space-time block code (STBC) for blocks of data that span several realizations of a block-static fading channel to achieve high diversity gain. The proposed code structures are necessary and sufficient to minimize the detection error probability. They also enable the detection computations to be partitioned into separate blocks such that the normalized complexity is reduced to little more than that for a single block. The additional complexity grows only linearly with L, the number of blocks for which the code design covers. Analysis shows that the diversity gain achieved by the code also grows linearly with L. This is confirmed by simulation results
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线性MMSE MIMO系统的空时多分组码设计
我们考虑了一种配备线性最小均方误差(MMSE)接收器的多输入多输出(MIMO)通信系统。我们设计了一种全速率线性空时分组码(STBC),用于跨越块静态衰落信道的几个实现的数据块,以获得高分集增益。所提出的代码结构对于最小化检测错误概率是必要的和足够的。它们还允许将检测计算划分为单独的块,从而将规范化的复杂性降低到比单个块稍微多一点。额外的复杂性只随着L(代码设计所涵盖的块的数量)线性增长。分析表明,代码实现的分集增益也随l线性增长,仿真结果也证实了这一点
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