Nonlinear precoding and pulse shaping are jointly considered in multi-user massive multiple-input multiple-output (MIMO) systems with low-resolution D/A-converters (DACs) in terms of algorithmic approach as well as large system performance. Two design criteria are investigated: the mean {squared} error (MSE) with active constellation extension (ACE) and the symbol error rate (SER). Both formulations are solved based on a modified version of the generalized approximate message passing (GAMP) algorithm. Furthermore, theoretical performance results are derived based on the state evolution analysis of the GAMP algorithm. The MSE based technique is extended to jointly perform over-the-air (OTA) spectral shaping and precoding for frequency-selective channels, in which the spectral performance is characterized at the transmitter and at the receiver. Simulation and analytical results demonstrate that the MSE based approach yields the same performance as the SER based formulation in terms of uncoded SER. The analytical results provide good performance predictions up to medium SNR. Substantial improvements in detection, as well as spectral performance, are obtained from the proposed combined pulse shaping and precoding approach compared to standard linear methods.
翻译:在多用户大规模多投入多输出多输出(MIMO)系统中,从算法方法以及大型系统性能的角度,对低分辨率D/A-交换器(DACs)的多用户大规模多输入多输出多输出产出系统(MIMO)共同考虑非线性预编码和脉冲成形。对两种设计标准进行了调查:具有主动星座扩展和符号误差率的平均值{qualred}错误(MSE)和(SER)。两种配方都是根据通用近似传递信息(GAMP)算法的修改版本解决的。此外,根据对GAMP算法的状态演变分析得出理论性能结果。基于MSESE的技术扩大到联合进行空中(OTA)光谱成形和频率选择性信道的预编码,其中光谱性能在发射机和接收器上都有特征。模拟和分析结果显示,基于MSE的方法在未编码SER(GAMU)的配方法方面产生同样的性能。基于理论的性能预测是中SNRR的。探测方面的重大改进,以及光谱性能性能比较从拟议的综合脉冲方法到直径方法。