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A Novel Fast Linear Iteration Detection Algorithm in Mil-Massive MIMO Systems

机译:密米米莫系统中的一种新型快速线性迭代检测算法

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摘要

Massive MIMO is an extremely attractive technology for the potential of improving transmission capacity significantly. However, the minimum mean square error (MMSE) detection algorithm has also high complexity because it involves matrix inversion in obtaining the near-optimal detection for uplink multiuser massive MIMO (MU-Massive MIMO) systems. Iteration detection is effective in avoiding matrix inversion, and several iteration methods have been proposed by academia as well. In this paper, we propose a parallel fast linear iteration detection (FLID) algorithm for uplink MU-Massive MIMO systems. The proposed FLID algorithm can accelerate the convergence rate through reducing the spectral radius ρ(B) of the re-derived iteration matrix B, and reach almost the same near-optimal detection as MMSE through a parallel iteration. The computational complexity of FLID reduces from O(K~3) to O(K~2). Simulation results show that the proposed FLID algorithm can also achieve the same detection performance to the traditional MMSE algorithm with lower complexity.
机译:大规模的MIMO是一种极其有吸引力的技术,可显着提高传输能力。然而,最小均方误差(MMSE)检测算法也具有很高的复杂性,因为它涉及在获得上行链路多用户大量MIMO(MU-MATHERIVE MIMO)系统的近最优检测时矩阵反转。迭代检测在避免矩阵反转方面是有效的,并且还通过学术界提出了几种迭代方法。在本文中,我们提出了一种平行的快速线性迭代检测(FLICT)算法用于上行链路MU - 大型MIMO系统。所提出的算法FLID可以通过降低重衍生迭代矩阵B的谱半径ρ(B)加快收敛速度​​,并通过并行迭代达到几乎相同的接近最优的检测作为MMSE。光晕的计算复杂性从O(k〜3)到O(k〜2)减少。仿真结果表明,该仿真算法还可以实现与较低复杂性的传统MMSE算法相同的检测性能。

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