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Low-Complexity Multiuser QAM Detection for Uplink 1-bit Massive MIMO

机译:用于上行链路1位大规模MIMO的低复杂度多用户QAM检测

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This letter studies multiuser detection for 1-bit massive multiple-input multiple-output systems in order to diminish the power consumption at the base station (BS). A low-complexity near-maximum-likelihood (nML) multiuser detection algorithm is designed, assuming that each BS antenna port is connected with a pair of single-bit resolution analog-to-digital converters and each user equipment (UE) transmits symbols from a quadrature amplitude modulation constellation. First, a novel convex program is formulated as a convex surrogate of the ML detector and subsequently solved through an accelerated first-order method. Then, the solution of the convex optimization problem is harnessed to solve a refined combinatorial problem with reduced search space, requiring non-exponential complexity on the number of the UEs. Judicious simulation study corroborates the efficacy of the resulting two-phase detection algorithm. The proposed two-phase algorithm can achieve symbol error rate performance close to the ML detector, with significantly reduced computation cost compared with the nML detection schemes in prior art.
机译:这封信研究了1位大规模多输入多输出系统的多用户检测,以减少基站(BS)的功耗。假设每个BS天线端口都与一对单位分辨率的模数转换器连接并且每个用户设备(UE)传输符号,设计了一种低复杂度的接近最大似然(nML)多用户检测算法。正交调幅星座图。首先,将新的凸程序公式化为ML检测器的凸代理,然后通过加速的一阶方法求解。然后,利用凸优化问题的解决方案来解决搜索空间减少的精细组合问题,这需要在UE数量上实现非指数复杂性。明智的仿真研究证实了所得两相检测算法的有效性。与现有技术的nML检测方案相比,所提出的两阶段算法可以实现接近ML检测器的符号误码率性能,并且显着降低了计算成本。

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