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Hybrid Beamforming for MIMO-OFDM Terahertz Wireless Systems over Frequency Selective Channels

机译:频率选择性信道上MIMO-OFDM太赫兹无线系统的混合波束成形

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摘要

We propose a novel hybrid beamforming (BF) scheme for the Terahertz (THz) wireless communication system over frequency selective channels. In the system, a multi-antenna base station which employs the sub-connected architecture adopts orthogonal frequency division multiplexing to serve a multi- antenna user. By building a wideband THz channel model, we design a beamsteering codebook searching algorithm for analog BF in which the channel state information of all subcarriers in the radio frequency domain is considered. We then design the digital BF by using the regularized channel inversion method for eliminating inter-band interference at the baseband. Numerical results demonstrate that our proposed hybrid BF scheme achieves a significant spectral efficiency advantage over the existing hybrid BF scheme which adopted the zero-forcing digital beamformer. The results also demonstrate that the spectral efficiency achieved by our proposed low-complexity scheme is very close to that achieved by the high- complexity fully digital BF scheme, especially when the average received power at the user is low.
机译:我们为频率选择信道上的太赫兹(THz)无线通信系统提出了一种新颖的混合波束成形(BF)方案。在该系统中,采用子连接架构的多天线基站采用正交频分复用为多天线用户服务。通过建立宽带太赫兹信道模型,设计了一种模拟BF的波束控制码本搜索算法,其中考虑了射频域中所有子载波的信道状态信息。然后,我们使用正则化信道反演方法设计数字BF,以消除基带上的带间干扰。数值结果表明,与采用零强迫数字波束形成器的现有混合BF方案相比,我们提出的混合BF方案具有显着的频谱效率优势。结果还表明,我们提出的低复杂度方案所实现的频谱效率非常接近高复杂度全数字BF方案所实现的频谱效率,尤其是在用户的平均接收功率较低时。

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