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Compressive-sensing-based multiuser detector for the large-scale SM-MIMO uplink

机译:基于压缩感知的多用户检测器,用于大规模sm-mImO上行链路

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摘要

Conventional spatial modulation (SM) is typically considered for transmission in the downlink of smallscale MIMO systems, where a single one of a set of say 2p antenna elements (AEs) is activated for implicitly conveying p bits. By contrast, inspired by the compelling benefits of large-scale MIMO (LS-MIMO) systems, here we propose a LS-SM-MIMO scheme for the uplink (UL), where each user having multiple AEs but only a single radio frequency (RF) chain invokes SM for increasing the UL-throughput. At the same time, by relying on hundreds of AEs but a small number of RF chains, the base station (BS) can simultaneously serve multiple users whilst reducing the power consumption. Due to the large number of AEs of the UL-users and the comparably small number of RF chains at the BS, the UL multi-user signal detection becomes a challenging large-scale under-determined problem. To solve this problem, we propose a joint SM transmission scheme and a carefully designed structured compressive sensing (SCS)-based multi-user detector (MUD) to be used at the users and BS, respectively. Additionally, the cyclic-prefix single-carrier (CPSC) is used to combat the multipath channels, and a simple receive AE selection is used for the improved performance over correlated Rayleigh-fading MIMO channels. We demonstrate that the aggregate SM signal consisting of multiple UL-users’ SM signals of a CPSC block appears the distributed sparsity. Moreover, due to the joint SM transmission scheme, aggregate SM signals in the same transmission group exhibit the group sparsity. By exploiting these intrinsically sparse features, the proposed SCS-based MUD can reliably detect the resultant SM signals with low complexity. Simulation results demonstrate that the proposed SCS-based MUD achieves a better signal detection performance than its counterparts even with higher UL-throughtput.
机译:通常考虑将常规空间调制(SM)用于小规模MIMO系统的下行链路中的传输,在该系统中,激活一组说成2p个天线元素(AE)中的一个以隐式传送p位。相比之下,受大规模MIMO(LS-MIMO)系统引人注目的好处的启发,我们在此为上行链路(UL)提出了LS-SM-MIMO方案,其中每个用户具有多个AE,但只有一个射频( RF)链调用SM以增加UL吞吐量。同时,通过依靠数百个AE和少量的RF链,基站(BS)可以同时为多个用户提供服务,同时降低功耗。由于UL用户的大量AE和BS处的RF链数量相对较少,因此UL多用户信号检测成为一个挑战性的大规模不确定问题。为解决此问题,我们提出了一种联合SM传输方案和经过精心设计的基于结构化压缩感测(SCS)的多用户检测器(MUD),分别用于用户和BS。另外,循环前缀单载波(CPSC)用于对抗多径信道,而简单的接收AE选择用于改善相关瑞利衰落MIMO信道的性能。我们证明了由CPSC块的多个UL用户的SM信号组成的聚集SM信号显示出稀疏分布。而且,由于联合SM传输方案,同一传输组中的聚合SM信号表现出组稀疏性。通过利用这些固有的稀疏特征,所提出的基于SCS的MUD可以以低复杂度可靠地检测所得的SM信号。仿真结果表明,所提出的基于SCS的MUD即使具有更高的UL吞吐量也比其同类产品具有更好的信号检测性能。

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