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Does Frequent Low Resolution Feedback Outperform Infrequent High Resolution Feedback for Multiple Antenna Beamforming Systems?

机译:对于多个天线波束成形系统,频繁的低分辨率反馈是否优于不频繁的高分辨率反馈?

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Multiple antenna systems that adapt to the channel conditions are known to provide numerous rate and reliability benefits. In frequency division duplexing, the transmitter typically learns about the channel conditions using a small amount of feedback (called limited feedback) sent on the reverse link. While feedback is well studied, there has been only limited work addressing how feedback techniques should be modified depending on the amount of mobility. This paper concerns a signaling scheme for limited feedback multiple antenna wireless communications taking the temporal correlation into account during feedback design. We refer to this as using an adaptive feedback period (AFP) scheme. In the AFP scheme, the transmitter and receiver reuse the past channel state information (CSI) as side information. Feedback to be used for several channel uses is sent from the receiver to the transmitter using a predetermined feedback update period. The feedback update period is determined by characterizing the temporal correlation statistic, so that the proposed AFP scheme outperforms the traditional limited feedback approach, which we refer to as the minimal feedback period (MFP) scheme. To measure the performance, the average effective SNR is considered. Bounds on the feedback update period, correlation coefficient, and feedback rate needed for the AFP scheme to outperform the MFP scheme are derived. Moreover, criteria to initiate the control of the feedback update period are obtained. Results on the average effective SNR are used to develop bounds on the feedback update period using the capacity loss. It is also shown that in the large system limit the feedback update periods required for both the average effective SNR and capacity loss converge to the same bound. These results verify that infrequent high resolution feedback is sometimes preferable to frequent low resolution feedback.
机译:已知适应信道条件的多天线系统可提供众多的速率和可靠性益处。在频分双工中,发射机通常使用在反向链路上发送的少量反馈(称为受限反馈)来了解信道条件。尽管对反馈进行了很好的研究,但是只有有限的工作来解决如何根据移动性来修改反馈技术。本文涉及在反馈设计过程中考虑时间相关性的有限反馈多天线无线通信的信令方案。我们称其为使用自适应反馈周期(AFP)方案。在AFP方案中,发送器和接收器将过去的信道状态信息(CSI)重新用作辅助信息。使用预定的反馈更新周期,将要用于几种信道使用的反馈从接收机发送到发射机。反馈更新周期是通过表征时间相关统计量来确定的,因此所提出的AFP方案优于传统的有限反馈方法,我们将其称为最小反馈周期(MFP)方案。为了测量性能,要考虑平均有效SNR。得出了AFP方案胜过MFP方案所需的反馈更新周期,相关系数和反馈速率的界限。此外,获得了启动反馈更新周期控制的标准。平均有效SNR的结果用于利用容量损失来确定反馈更新周期的界限。还表明,在大型系统限制中,平均有效SNR和容量损耗均需要的反馈更新周期收敛于相同范围。这些结果证明,不频繁的高分辨率反馈有时比频繁的低分辨率反馈更可取。

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