利用宽带波束对准中的波束分裂效应:一种基于深度展开的后验匹配方法

IF 17.2
Qimei Chen;Yang Yang;Xiaoxia Xu;Guangxu Zhu;Jian Zhang;Hao Jiang
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引用次数: 0

摘要

大天线宽带毫米波(mmWave)/太赫兹(THz)系统由于不可忽略的信号传播延迟而不可避免地遭受严重的波束分裂效应,从而大大降低了通信效率。然而,如果适当利用宽带分裂效应,也可以通过感知分裂方向进行信道训练带来好处。因此,本文提出了一种具有真时延(TTD)模块的新型宽带波束对准框架,充分利用可控分裂波束进行有效的到达角(AoAs)估计。此外,我们开发了一种分层后验匹配(PM)的宽带波束对准方法,该方法主动配置分裂波束以加速aoa后验概率分布的估计。为了解决预设计码本的计算复杂性和PM中高斯分布假设的不敏感性,我们进一步提出了一种基于深度展开机制的低复杂度、高灵活性的宽带波束对准方法。数值结果表明:1)在相同的导频开销下,该框架能显著提高AoAs的估计精度。2)即使在低信噪比(SNR)情况下,所提出的低复杂度深度展开方法也优于传统PM机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploiting Beam Split Effect on Wideband Beam Alignment: A Deep Unfolding Based Posterior Matching Approach
The massive-antenna wideband millimeter wave (mmWave)/terahertz (THz) systems inevitably suffer from a severe beam split effect due to the non-negligible signal propagation delays, which dramatically reduces communication efficiency. Nevertheless, if the wideband split effect is properly utilized, it can also bring benefits via sensing split directions for channel training. Hence, this paper proposes a novel wideband beam alignment framework with true-time-delayer (TTD) modules, which can fully exploit the controllable split beams for efficient angle-of-arrivals (AoAs) estimation. Moreover, we develop a hierarchical posterior matching (PM) enabled wideband beam alignment approach, which proactively configures the split beams to accelerate the estimation of AoAs posterior probability distributions. To deal with the computational complexity of the predesigned codebook and the insensitivity of the Gaussian distribution assumption in PM, we further introduce a low-complex and high-flexible wideband beam alignment approach based on a deep unfolding mechanism. Numerical results verify that: 1) The proposed framework can significantly improve the AoAs estimation accuracy at the cost of the same pilot overheads. 2) The proposed low-complexity deep unfolding approach outperforms the conventional PM mechanism even in low signal-to-noise-ratio (SNR) scenarios.
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