论文标题
近场宽带通道的估计
Near-Field Wideband Channel Estimation for Extremely Large-Scale MIMO
论文作者
论文摘要
在毫米波(MMWave)和Terahertz(THZ)频段的极端大规模多输入量输出(XL-MIMO)在支持极端远光的增益以及超宽带光谱资源方面起着重要作用。不幸的是,准确的宽带XL-MIMO通道估计受到新的挑战,称为近场束分裂效果。先前的工作要么忽略了准确的近场通道模型,要么无法利用梁的拆分效果,从而导致宽带XL-MIMO的通道估计精度差。为了解决此问题,本文提出了一种基于双线性模式检测(BPD)的方法,以准确恢复宽带XL-MIMO通道。具体而言,通过分析近场宽带通道的特征,我们首先揭示了近场束拆分效果的双线性模式,这意味着在角度和距离域中稀疏支撑近场通道的稀疏支撑集可以视为频率相对于频率的线性函数。然后,在同时启发了经典的正交匹配追踪技术的启发下,我们使用双线性模式来估计所有频率下每个近场路径成分的到达角度(AOA)和距离参数。这样,可以通过压缩传感算法恢复整个宽带XL-MIMO通道。此外,我们提供了与现有算法相比,提出的算法的计算复杂性。最后,仿真结果表明,在存在近场束分裂效果的情况下,我们的方案可以实现近场宽带XL-MIMO通道的准确估计。
Extremely large-scale multiple-input-multiple-output (XL-MIMO) at millimeter-wave (mmWave) and terahertz (THz) bands plays an important role in supporting extreme high beamforming gain as well as ultra-wideband spectrum resources. Unfortunately, accurate wideband XL-MIMO channel estimation suffers from the new challenge called as the near-field beam split effect. Prior works either neglect the accurate near-field channel model or fail to exploit the beam split effect, resulting in poor channel estimation accuracy for wideband XL-MIMO. To tackle this problem, this paper proposes a bilinear pattern detection (BPD) based approach to accurately recover the wideband XL-MIMO channel. Specifically, by analyzing the characteristics of near-field wideband channels, we first reveal the bilinear pattern of the near-field beam split effect, which implies that the sparse support set of near-field channels in both the angle and the distance domains can be regarded as a linear function against frequency. Then, inspired by the classical simultaneously orthogonal matching pursuit technique, we use the bilinear pattern to estimate the angle-of-arrival (AoA) and distance parameters of each near-field path component at all frequencies. In this way, the entire wideband XL-MIMO channel can be recovered by compressed sensing algorithms. Moreover, we provide the computational complexity of the proposed algorithm compared with existing algorithms. Finally, simulation results demonstrate that our scheme can achieve the accurate estimation of the near-field wideband XL-MIMO channel in the presence of near-field beam split effect.