论文标题

THZ智能反射表面通信的远处/近场横梁和解决方案

The Far-/Near-Field Beam Squint and Solutions for THz Intelligent Reflecting Surface Communications

论文作者

Hao, Wanming, You, Xiaobei, Zhou, Fuhui, Chu, Zheng, Sun, Gangcan, Xiao, Pei

论文摘要

Terahertz(THZ)和智能反射表面(IRS)被视为两种有前途的技术,可提高未来6G网络的容量和覆盖率。通常,IRS以THZ频率实施时通常配备大型元素。在这种情况下,应考虑近场模型和横梁斜视。因此,在本文中,我们首次研究了THZ IRS通信中的远场和近场横梁。远场和近场通道模型是根据不同的电磁辐射特性构建的。接下来,我们首先根据级联基站(BS)-IRS-用户通道模型分析远场梁及其对梁增益的影响,然后研究了近场的情况。为了克服远场和近场梁的斜视效应,我们建议将延迟可调节的跨面(DAM)应用于IRS,并开发出优化IRS元件的反射相移和时间延迟的方案,从而有效消除了由光束戳所引起的光束增益损失。最后,进行了模拟以证明我们提出的方案在对抗近距离和远场梁斜视中的有效性。

Terahertz (THz) and intelligent reflecting surface (IRS) have been regarded as two promising technologies to improve the capacity and coverage for future 6G networks. Generally, IRS is usually equipped with large-scale elements when implemented at THz frequency. In this case, the near-field model and beam squint should be considered. Therefore, in this paper, we investigate the far-field and near-field beam squint problems in THz IRS communications for the first time. The far-field and near-field channel models are constructed based on the different electromagnetic radiation characteristics. Next, we first analyze the far-field beam squint and its effect for the beam gain based on the cascaded base station (BS)-IRS-user channel model, and then the near-field case is studied. To overcome the far-field and near-field beam squint effects, we propose to apply delay adjustable metasurface (DAM) to IRS, and develop a scheme of optimizing the reflecting phase shifts and time delays of IRS elements, which effectively eliminates the beam gain loss caused by beam squint. Finally, simulations are conducted to demonstrate the effectiveness of our proposed schemes in combating the near and far field beam squint.

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