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A Limited-Feedback Scheduling and Beamforming Scheme for Multi-User Multi-Antenna Systems

机译:多用户多天线系统的有限反馈调度和波束成形方案

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This paper proposes an efficient two-stage limited-feedback beamforming and scheduling scheme for multiple-antenna cellular communication systems. The system model includes a base-station with $M$ antennas and a large pool of users with a total feedback rate of $B$ bits per fading block. The feedback process is divided into two stages. In the first stage, the users measure their channel gains from each antenna and feedback the index of the antenna with the highest channel gain along with the gain itself. Based on this information, the base-station schedules $M$ users with the highest channel gains from its $M$ antennas and polls those users for explicit quantization of their vector channels in the second stage. Based on these quantized channels, the base-station then forms zero-forcing beamforming vectors for downlink transmission. This paper presents an approximate analysis for the proposed scheme which is used to optimize the bit allocation between the two feedback stages. It is shown that for a total number of feedback bits $B$, the number of feedback bits assigned to the second stage, $B_2$, should scale as $M(M{-}1)log(SNRtimes B)$. In particular, the fraction $B_2/B$ behaves as ${log B}/{B}$ in the asymptotic regime where $B rightarrow infty$. Further, the approximate downlink sum rate is shown to scale as $MlogSNR + Mloglog B$, suggesting that both multiuser multiplexing and multiuser diversity gains are realized. As the numerical results verify, the proposed feedback scheme, in spite of its low complexity, performs very close to the more complicated beamforming and scheduling schemes in the literature and in fact outperforms such schemes in the high-SNR regime.
机译:本文为多天线蜂窝通信系统提出了一种有效的两阶段有限反馈波束形成和调度方案。系统模型包括一个带有$ M $天线的基站和大量用户,每个衰落块的总反馈速率为$ B $位。反馈过程分为两个阶段。在第一阶段,用户测量每个天线的信道增益,并反馈具有最高信道增益的天线索引以及增益本身。根据此信息,基站从$ M $天线中调度具有最高信道增益的$ M $用户,并在第二阶段轮询这些用户以对其向量信道进行显式量化。然后,基于这些量化的信道,基站形成用于下行链路传输的迫零波束形成矢量。本文对提出的方案进行了近似分析,该方案用于优化两个反馈级之间的位分配。结果表明,对于总反馈比特数$ B $,分配给第二级的反馈比特数$ B_2 $应该按比例缩放为$ M(M {-} 1)log(SNRtimes B)$。特别地,在$ B rightarrow infty $的渐近状态下,分数$ B_2 / B $表现为$ {log B} / {B} $。此外,近似的下行链路总和速率显示为缩放为$ MlogSNR + Mloglog B $,表明同时实现了多用户复用和多用户分集增益。正如数值结果所证实的那样,所提出的反馈方案尽管复杂度较低,但其性能却与文献中较为复杂的波束成形和调度方案非常接近,实际上在高SNR情况下优于此类方案。

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