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The Impact of Physical Channel on Performance of Subspace-Based Channel Estimation in Massive MIMO Systems

机译:大规模MIMO系统中物理信道对基于子空间的信道估计性能的影响

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摘要

A subspace method for channel estimation has been recently proposed for tackling the pilot contamination effect, which is regarded by some researchers as a bottleneck in massive MIMO systems. It was shown in the literature that if the power ratio between the desired signal and interference is kept above a certain value, the received signal spectrum splits into signal and interference eigenvalues, namely, the “pilot contamination” effect can be completely eliminated. However, in the literature an independently distributed (i.d.) channel is assumed, which is actually not much the case in practice. Considering this, a more sensible finite-dimensional physical channel model (i.e., a finite scattering environment, where signals impinge on the base station (BS) from a finite number of angles of arrival (AoA)) is employed in this paper. Via asymptotic spectral analysis, it is demonstrated that, compared with the i.d. channel, the physical channel imposes a penalty in the form of an increased power ratio between the useful signal and the interference. Furthermore, we demonstrate an interesting “antenna saturation” effect, i.e., when the number of the BS antennas approaches infinity, the performance under the physical channel with AoAs is limited by and nearly the same as the performance under the i.d. channel with receive antennas.
机译:最近已经提出了一种用于信道估计的子空间方法来解决导频污染效应,一些研究者认为这是大规模MIMO系统的瓶颈。从文献中可以看出,如果将所需信号和干扰之间的功率比保持在某个值以上,则接收到的信号频谱会分成信号和干扰特征值,即可以完全消除“导频污染”效应。然而,在文献中,假定了独立分布的(i.d.)信道,实际上实际上情况并不多。考虑到这一点,本文采用了更合理的有限维物理信道模型(即有限散射环境,其中信号从有限数量的到达角(AoA)入射到基站(BS)上)。通过渐近光谱分析,证明了与内径相比。在信道上,物理信道以有用信号和干扰之间的功率比增加的形式施加损失。此外,我们展示了一个有趣的“天线饱和”效果,即,当BS天线的数量接近无穷大时,具有AoA的物理信道下的性能受到i.d下性能的限制,并且几乎与之相同。带接收天线的频道。

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