Point-to-point MIMO MMSE vector precoding and thp achieving capacity

M. Joham, H. Brunner, R. Hunger, D. Schmidt, W. Utschick
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引用次数: 3

Abstract

Non-linear precoding for point-to-point (P2P) multiple-input multiple-output (MIMO) systems is considered. First, the minimum mean square error (MMSE) optimal vector precoding (VP) is presented for different receiver structures, viz., weighted identity matrix, diagonal matrix, weighted unitary matrix, and matrix without particular structure. Whereas the former two structures can also be applied to the vector broadcast channel, the latter two are only realizable for cooperative receivers. Second, VP is derived that minimizes the MSE but is restricted to maximize the mutual information of the MIMO channel. Third, the corresponding Tomlinson-Harashima precoding (THP) is found by applying the nearest-plane approximation to the computation of the perturbation signal. The resulting maximum mutual information THP clearly outperforms the state-of-the-art P2P-MIMO THP based on the generalized triangular decomposition (GTD) with respect to MSE and BER.
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点对点MIMO MMSE矢量预编码和thp实现能力
研究了点对点多输入多输出(MIMO)系统的非线性预编码问题。首先,针对不同的接收机结构,即加权单位矩阵、对角矩阵、加权酉矩阵和无特定结构矩阵,提出了最小均方误差(MMSE)最优矢量预编码(VP)。而前两种结构也可以应用于矢量广播信道,后两种结构仅适用于合作接收机。其次,推导出最小化MSE的VP,但限制为最大化MIMO信道的互信息。第三,通过对扰动信号的计算应用最接近平面逼近,得到相应的Tomlinson-Harashima预编码(THP)。由此产生的最大互信息THP明显优于基于MSE和BER的广义三角分解(GTD)的最先进的P2P-MIMO THP。
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