In this paper, we study the performance of wideband terahertz (THz) communications assisted by an intelligent reflecting surface (IRS). Specifically, we first introduce a generalized channel model that is suitable for electrically large THz IRSs operating in the near-field. Unlike prior works, our channel model takes into account the spherical wavefront of the emitted electromagnetic waves and the spatial-wideband effect. We next show that conventional frequency-flat beamfocusing significantly reduces the power gain due to beam squint, and hence is highly suboptimal. More importantly, we analytically characterize this reduction when the spacing between adjacent reflecting elements is negligible, i.e., holographic reflecting surfaces. Numerical results corroborate our analysis and provide important insights into the design of future IRS-aided THz systems.
翻译:在本文中,我们在智能反射表面(IRS)的协助下,研究了宽频梯形(THz)通信的性能。具体地说,我们首先采用了一种通用信道模型,适合在近场运行的大型电磁离心机。与先前的工程不同,我们的频道模型考虑到排放电磁波和空间宽带效应的球形波前端。我们接下来显示,常规频率膨胀波的聚焦会大大减少了Baam 斜面(IRS)产生的能量增益,因此非常不理想。更重要的是,当相邻反射元素之间的间距可忽略不计时,我们分析了这种减速特征,即,即,荷光反射表面。数字结果证实了我们的分析,并为未来IRS辅助的THz系统的设计提供了重要的见解。