Low-complexity multiuser detection for uplink large-scale MIMO

Shengchu Wang, Yunzhou Li, Jing Wang
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引用次数: 19

Abstract

In this paper, an iterative multiuser detector is proposed for uplink large-scale Multiple Input Multiple Output (MIMO). It is developed based on the Generalized Approximate Message Passing (GAMP) algorithm, and its convergence properties are analyzed by a one-dimensional iteration termed as State Evolution (SE). The SE analysis proves that the complexity of the GAMP detector (GAMPd) is one order of magnitude smaller than that of the Minimum Mean Square Error (MMSE) detector. Simulation results show the GAMPd performs similarly to MMSE at least, and even outperforms the latter when the number of BS antennas is not much larger than the number of users. In addition, the GAMPd with matrix-vector multiplications is suitable for hardware implementation.
面向上行大规模MIMO的低复杂度多用户检测
提出了一种用于上行链路大规模多输入多输出(MIMO)的迭代多用户检测器。它是在广义近似消息传递(GAMP)算法的基础上发展起来的,并通过称为状态演化(SE)的一维迭代分析了其收敛性。SE分析证明,GAMP检测器(GAMPd)的复杂度比最小均方误差检测器(MMSE)的复杂度小一个数量级。仿真结果表明,GAMPd的性能至少与MMSE相当,当BS天线数量不大于用户数量时,GAMPd的性能甚至优于MMSE。此外,具有矩阵-向量乘法的GAMPd适合硬件实现。
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