Intelligent reflecting surface (IRS)-assisted wireless communication is widely deemed a key technology for 6G systems. The main challenge in deploying an IRS-aided terahertz (THz) link, though, is the severe propagation losses at high frequency bands. Hence, a THz IRS is expected to consist of a massive number of reflecting elements to compensate for those losses. However, as the IRS size grows, the conventional far-field assumption starts becoming invalid and the spherical wavefront of the radiated waves must be taken into account. In this work, we focus on the near-field and analytically determine the IRS response in the Fresnel zone by leveraging electromagnetic theory. Specifically, we derive a novel expression for the path loss and beampattern of a holographic IRS, which is then used to model its discrete counterpart. Our analysis sheds light on the modeling aspects and beamfocusing capabilities of THz IRSs.
翻译:智能反射表面(IRS)辅助无线通信被广泛认为是6G系统的关键技术。虽然部署IRS辅助千兆赫(THz)链接的主要挑战是高频波段的严重传播损失。因此,THzIRS预计将包含大量反映这些损失的元素。然而,随着IRS规模的扩大,传统的远地假设开始失效,辐射波的球形波波波必须加以考虑。在这项工作中,我们侧重于利用电磁理论从近场和分析角度确定Fresnel区的IRS反应。具体地说,我们为路径丢失制作了一种新表达方式,并标出了一种全息IRS,然后用来模拟其离散对应的光谱。我们的分析揭示了THz IRS的模型方面和相容能力。