Low-complexity MMSE signal detection algorithm based on BiCGSTAB method for uplink massive MIMO systems

Shengwei Lyu, Xiaohan Guan
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Abstract

For large-scale multiple-input multiple-output (MIMO) systems, the near-optimal algorithm of minimum mean square error (MMSE) method is widely used for uplink signal detection, but the matrix inversion process leads to high computational complexity. In this paper, a low-complexity signal detection algorithm based on biconjugate gradient stabilized (BiCGSTAB) method is proposed. A special property of the MMSE filtering matrix indicates the appropriateness of this algorithm and the computational complexity analysis shows that this method is capable to reduce the complexity from O(K3) to O(K2) and can be easier to implement on FPGA. Finally, simulation result verifies the advantage of BiCGSTAB algorithm over other stationary iterative algorithms.
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基于bicstab的上行海量MIMO系统低复杂度MMSE信号检测算法
对于大规模多输入多输出(MIMO)系统,上行信号检测广泛采用最小均方误差(MMSE)方法的近最优算法,但其矩阵反演过程计算复杂度较高。提出了一种基于双共轭梯度稳定(BiCGSTAB)方法的低复杂度信号检测算法。MMSE滤波矩阵的特殊性质表明了该算法的适用性,计算复杂度分析表明,该算法能够将滤波复杂度从0 (K3)降低到0 (K2),并且易于在FPGA上实现。最后,仿真结果验证了BiCGSTAB算法相对于其他平稳迭代算法的优越性。
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