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Efficient matrix inversion architecture for linear detection in massive MIMO systems

机译:大规模MIMO系统中用于线性检测的高效矩阵求逆架构

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Resulted by the hundreds of antennas at the base-station (BS) side, the dimension of matrices involved in linear detection for massive multiple-input multiple-output (MIMO) uplink systems increases drastically. Being an indispensable part of linear detection, the matrix inversion suffers a lot from the huge matrix size of massive MIMO, and therefore becomes inefficient for realization. By achieving good tradeoff between complexity and performance, approximate matrix inversion via Neumann series now boosts one promising solution for linear detection of massive MIMO systems. In this paper, an efficient hardware architecture for approximate matrix inversion is proposed. This architecture is hardware efficient and suitable for various applications with different approximation precisions. FPGA implementation results of matrix inversion for 4 × 32 massive MIMO system have shown that the proposed architecture can achieve 56.7% higher frequency with only 58.9% hardware resources of its existing counterparts. Look-ahead transformations which can make the proposed architecture more suitable for high speed applications are also mentioned.
机译:由于基站(BS)侧有数百条天线,大规模多输入多输出(MIMO)上行链路系统的线性检测所涉及的矩阵尺寸急剧增加。作为线性检测必不可少的部分,矩阵反演由于大规模MIMO的巨大矩阵尺寸而遭受很大损失,因此实现效率低下。通过在复杂性和性能之间取得良好的折衷,通过Neumann系列进行近似矩阵求逆,现在为线性检测大型MIMO系统提供了一种有希望的解决方案。本文提出了一种高效的近似矩阵求逆的硬件架构。该体系结构具有高硬件效率,适用于具有不同近似精度的各种应用。针对4×32大规模MIMO系统的矩阵求逆的FPGA实现结果表明,所提出的架构仅使用现有硬件的58.9%的硬件资源即可实现56.7%的更高频率。还提到了可以使所提出的体系结构更适合于高速应用的前瞻性转换。

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