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Large-scale multiuser SM-MIMO versus massive MIMO

机译:大规模多用户SM-MIMO与大规模MIMO

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Spatial modulation (SM) is attractive for multi-antenna wireless communications. SM uses multiple transmit antenna elements but only one transmit radio frequency (RF) chain. In SM, in addition to the information bits conveyed through conventional modulation symbols (e.g., QAM), the index of the active transmit antenna also conveys information bits. In this paper, we establish that SM has significant signal-to-noise (SNR) advantage over conventional modulation in large-scale multiuser (multiple-input multiple-output) MIMO systems. Our new contribution in this paper addresses the key issue of large-dimension signal processing at the base station (BS) receiver (e.g., signal detection) in large-scale multiuser SM-MIMO systems, where each user is equipped with multiple transmit antennas (e.g., 2 or 4 antennas) but only one transmit RF chain, and the BS is equipped with tens to hundreds of (e.g., 128) receive antennas. Specifically, we propose two novel algorithms for detection of large-scale SM-MIMO signals at the BS; one is based on message passing and the other is based on local search. The proposed algorithms achieve very good performance and scale well. For the same spectral efficiency, multiuser SM-MIMO outperforms conventional multiuser MIMO (recently being referred to as massive MIMO) by several dBs. The SNR advantage of SM-MIMO over massive MIMO can be attributed to: (i) because of the spatial index bits, SM-MIMO can use a lower-order QAM alphabet compared to that in massive MIMO to achieve the same spectral efficiency, and (ii) for the same spectral efficiency and QAM size, massive MIMO will need more spatial streams per user which leads to increased spatial interference.
机译:空间调制(SM)对于多天线无线通信具有吸引力。 SM使用多个发射天线元件,但仅使用一个发射射频(RF)链。在SM中,除了通过常规调制符号(例如,QAM)传送的信息比特之外,有源发射天线的索引还传送信息比特。在本文中,我们确定SM在大规模多用户(多输入多输出)MIMO系统中具有优于常规调制的信噪比(SNR)优势。本文中的新成果致力于解决大规模多用户SM-MIMO系统中基站(BS)接收器上的大尺寸信号处理(例如信号检测)的关键问题,其中每个用户都配备了多个发射天线(例如,使用2或4个天线),但只有一个发射RF链,并且BS配备了数十到数百个(例如128个)接收天线。具体而言,我们提出了两种新颖的算法,用于在BS处检测大规模SM-MIMO信号;一种基于消息传递,另一种基于本地搜索。所提出的算法实现了很好的性能并且可以很好地扩展。对于相同的频谱效率,多用户SM-MIMO比常规多用户MIMO(最近称为大规模MIMO)好几个dB。 SM-MIMO相对于大规模MIMO的SNR优势可归因于:(i)由于空间索引位的原因,与大规模MIMO中的SM-MIMO相比,SM-MIMO可以使用低阶QAM字母来实现相同的频谱效率,并且(ii)对于相同的频谱效率和QAM大小,大规模MIMO将需要每个用户更多的空间流,这会导致空间干扰的增加。

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