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CSI feedback for massive MIMO system with dual-polarized antennas

机译:带有双极化天线的大规模MIMO系统的CSI反馈

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Massive MIMO is a promising technique to provide high data rate with good energy efficiency for the future wireless cellular communication. However, its performance benefit often can be realized only when accurate channel state information (CSI) is available at the transmitter to perform accurate beamforming. With large number of antennas, full CSI consumes too much overhead to feed back without compression. To reduce CSI feedback overhead, CSI feedback scheme with dual stage precoding structure is designed to quantize the long term spatial channel correlation information and short term linear precoder information. In this paper, we discuss how to optimize this dual stage precoding scheme in the typical dual-polarized massive MIMO system. The eigenvalues of spatial correlation matrix are used to improve feedback efficiency. By relaxing the constant modulus constraint in codebook design, more flexible long term precoding can be used and adapt to the channel. A specific structure of long term precoding matrix for dual-polarized MIMO system is proposed to ensure the orthogonality of the final precoder for multi-layer transmission.
机译:大规模MIMO是一种有前途的技术,可以为未来的无线蜂窝通信提供高数据速率和良好的能源效率。但是,只有在发射机处有准确的信道状态信息(CSI)可以执行准确的波束成形时,通常才能实现其性能优势。对于大量天线,完整的CSI会消耗过多的开销,无法进行无压缩的反馈。为了减少CSI反馈的开销,设计了具有双阶段预编码结构的CSI反馈方案来量化长期空间信道相关信息和短期线性预编码器信息。在本文中,我们讨论了如何在典型的双极化大规模MIMO系统中优化这种双级预编码方案。空间相关矩阵的特征值用于提高反馈效率。通过放松码本设计中的恒定模数约束,可以使用更灵活的长期预编码并适应信道。为了保证多层传输的最终预编码器的正交性,提出了双极化MIMO系统长期预编码矩阵的具体结构。

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