大规模MIMO-OFDM中高维信道特性的多域转换

G. Yue, Xiao-Feng Qi
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引用次数: 1

摘要

在本文中,我们首先定义了宽带MIMO-OFDM系统的高维(HiDi)信道特性,即空频协方差。然后,我们设计了在频域中从一个载波频率到另一个载波频率的HiDi协方差转换,例如,用于FDD系统。具体来说,我们利用希尔伯特空间中的投影法估计功率角延迟谱,形成空频协方差的频域变换。在考虑无限延迟扩展的情况下,我们也得到了渐近解,大大降低了复杂度。此外,我们用两个示例性的多面板场景在空间和频率域推广了空频协方差的转换。然后,我们将一般解应用于特定的天线阵列配置,即均匀线性阵列(ULA),并获得转换的显式表达式。数值模拟验证了所设计的转换的有效性。
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Multi-Domain Conversions of High Dimensional Channel Characteristics for Massive MIMO-OFDM
In this paper, we first define a high dimensional (HiDi) channel characteristics, i.e., space-frequency covariance, for wideband MIMO-OFDM systems. We then design the conversion of the HiDi covariance in frequency domain from one carrier frequency to another, e.g., for FDD systems. Specifically, we apply the projection method in a Hilbert space to estimate the power angle delay spectrum and form the frequency domain conversion of the space-frequency covariance. We also obtain the asymptotic solutions when considering the infinite delay spread, which significantly reduces the complexity. Moreover, we generalize the conversions of space-frequency covariance in both spatial and frequency domains with two exemplary multi-panel scenarios. We then apply the general solutions to a specific antenna array configuration, i.e., uniform linear array (ULA), and obtain the explicit expressions of conversions. Numerical simulations demonstrate the efficiency of the designed conversions.
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