An accurate and simple analytical model for the computation of the reflection amplitude and phase of Reconfigurable Intelligent Surfaces is presented. The model is based on a transmission-line circuit representation of the RIS which takes into account the physics behind the structure including the effect of all relevant geometrical and electrical parameters. The proposed representation of the RIS allows to take into account the effect of incidence angle, mutual coupling among elements and the effect of the interaction of the periodic surface with the RIS ground plane. It is shown that the proposed approach allows to design a physically realisable RIS without recurring to onerous electromagnetic simulations. The proposed model aims at filling the gap between RIS assisted communications algorithms and physical implementation issues which determine realistic performance of these surfaces.
翻译:为计算可重新配置的智能表面的反射振幅和阶段,提出了准确而简单的分析模型,该模型以RIS的传输线电路表示为基础,其中考虑到结构背后的物理,包括所有相关几何参数和电气参数的影响。拟议的RIS表示能够考虑到发生角的影响、各元素之间的相互组合以及定期表面与RIS地面平面相互作用的影响。该模型表明,拟议的方法可以设计一种实际可实现的RIS,而不必重复到繁重的电磁模拟中。拟议的模型旨在填补RIS协助的通信算法与实际执行问题之间的差距,从而决定这些表面的实际性能。