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Sounding reference signal pattern design for time division duplex multiple-input multiple-output and orthogonal frequency division multiplexing systems

机译:时分双工多输入多输出和正交频分复用系统的探测参考信号模式设计

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摘要

In the long-term evolution (LTE) time division duplex (TDD) systems, base stations (BSs) use uplink sounding reference signals (SRSs) to estimate downlink channel state information (CSI) for downlink beamforming transmissions. In the current SRS pattern scheme, because SRSs of up to eight users are multiplexed on the same time-frequency resources, there exist mutual interferences among these SRSs over fading channels. Thus, the current scheme impacts the estimation accuracy of CSI and degrades the beamforming performance. Based on the characteristics of TDD systems, the authors propose a SRS pattern scheme, in which each user sends SRSs only on the allocated bandwidth instead of on full bandwidth as in the current LTE TDD systems, to eliminate the interferences among SRSs. Simulations show that the proposed scheme outperforms the current scheme in the estimation accuracy for various frequency-selective and time-selective fading channels. In addition, compared with the current SRS pattern scheme, the proposed SRS pattern scheme is robust to frequency-selective channels, and does not be impacted by the timing offset, and provides the flexibility for the choice of channel estimator at the BS side.
机译:在长期演进(LTE)时分双工(TDD)系统中,基站(BS)使用上行链路探测参考信号(SRS)估计下行链路信道状态信息(CSI)用于下行链路波束成形传输。在当前的SRS模式方案中,由于在相同的时频资源上复用多达八个用户的SRS,因此在衰落信道上这些SRS之间存在相互干扰。因此,当前方案影响CSI的估计精度并且降低波束成形性能。基于TDD系统的特性,作者提出了一种SRS模式方案,其中每个用户仅在分配的带宽上发送SRS,而不是像当前LTE TDD系统中那样在全带宽上发送SRS,以消除SRS之间的干扰。仿真表明,在各种频率选择和时间选择衰落信道的估计精度上,所提出的方案均优于当前方案。另外,与当前的SRS模式方案相比,所提出的SRS模式方案对于频率选择信道是鲁棒的,并且不受定时偏移的影响,并且为BS侧的信道估计器的选择提供了灵活性。

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  • 来源
    《Communications, IET》 |2012年第7期|p.774-782|共9页
  • 作者

    Zhou B.;

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