We present an accurate and simple analytical model for the computation of the reflection amplitude and phase of Reflecting Intelligent Surfaces. The model is based on a transmissionline 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, the mutual coupling among elements, the effect of the interaction of the periodic surface with the RIS ground plane. It is shown that, by using the proposed approach, it is possible to maximize the power received by a user in a RIS-assisted link without recurring to onerous electromagnetic simulations. The proposed model aims at filling the gap in the design of RIS assisted communications algorithms that are usually disconnected from physical implementation issues and realistic performance of these surfaces.
翻译:为计算反射振幅和反射智能表面阶段,我们提出了一个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原理,包括所有相关几何参数和电参数的影响,拟议的RIS的表示方式能够考虑到发生率角度的影响、各元素之间的相互结合、定期表面与RIS地面平面相互作用的影响,表明通过采用拟议方法,有可能最大限度地扩大一个用户在RIS辅助链接中获得的动力,而不会重复到繁琐的电磁模拟,拟议的模型旨在填补在设计ISS辅助通信算法方面存在的差距,这些算法通常与实际执行问题和这些表面的实际性能脱节脱节。