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Channel Extrapolation in FDD Massive MIMO: Theoretical Analysis and Numerical Validation

机译:FDD大规模MIMO中的信道外推:理论分析和数值验证

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Downlink channel estimation in massive MIMO systems is well known to generate a large overhead in frequency division duplex (FDD) mode as the amount of training generally scales with the number of transmit antennas. Using instead an extrapolation of the channel from the measured uplink estimates to the downlink frequency band completely removes this overhead. In this paper, we investigate the theoretical limits of channel extrapolation in frequency. We highlight the advantage of basing the extrapolation on high-resolution channel estimation. A lower bound (LB) on the mean squared error (MSE) of the extrapolated channel is derived. A simplified LB is also proposed, giving physical intuition on the SNR gain and extrapolation range that can be expected in practice. The validity of the simplified LB relies on the assumption that the paths are well separated. The SNR gain then linearly improves with the number of receive antennas while the extrapolation performance penalty quadratically scales with the ratio of the frequency and the training bandwidth. The theoretical LB is numerically evaluated using a 3GPP channel model and we show that the LB can be reached by practical high-resolution parameter extraction algorithms. Our results show that there are strong limitations on the extrapolation range than can be expected in SISO systems while much more promising results can be obtained in the multiple-antenna setting as the paths can be more easily separated in the delay-angle domain.
机译:众所周知,大规模MIMO系统中的下行链路信道估计是在频分双工(FDD)模式中产生大的开销,因为训练量通常具有发射天线的数量。使用代替对下行链路频带的测量上行链路估计的信道的外推完全消除该开销。在本文中,我们研究了频率频率外推的理论限制。我们突出了基于高分辨率信道估计基础推出的优势。推导出外推通道的平均平均误差(MSE)的下限(LB)。还提出了一种简化的LB,为SNR增益和外推范围提供了可以预期的SNR增益和外推范围的物理直接。简化LB的有效性依靠假设路径分开很好。然后,SNR增益随着接收天线的数量而直线地改善,而外推性能损失与频率和训练带宽的比率相等。理论LB使用3GPP信道模型进行数值评估,并且我们表明可以通过实用的高分辨率参数提取算法达到LB。我们的结果表明,在SISO系统中可以预期的外推范围有很大的限制,而在多天线设置中可以获得更有前途的结果,因为在延迟角域中可以更容易地分离路径。

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