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Reconfigurable Intelligent Surfaces: Bridging the Gap Between Scattering and Reflection

机译:可重新配置的智能表面:桥接散射和反射之间的差距

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In this work we address the distance dependence of reconfigurable intelligent surfaces (RIS). As differentiating factor to other works in the literature, we focus on the array near-field, what allows us to comprehend and expose the promising potential of RIS. The latter mostly implies an interplay between the physical size of the RIS and the size of the Fresnel zones at the RIS location, highlighting the major role of the phase. To be specific, the point-like (or zero-dimensional) conventional scattering characterization results in the well-known dependence with the fourth power of the distance. On the contrary, the characterization of its near-field region exposes a reflective behavior following a dependence with the second and third power of distance, respectively, for a two-dimensional (planar) and one-dimensional (linear) RIS. Furthermore, a smart RIS implementing an optimized phase control can result in a power exponent of four that, paradoxically, outperforms free-space propagation when operated in its near-field vicinity. All these features have a major impact on the practical applicability of the RIS concept. As one contribution of this work, the article concludes by presenting a complete signal characterization for a wireless link in the presence of RIS on all such regions of operation.
机译:在这项工作中,我们解决了可重新配置智能表面(RIS)的距离依赖性。由于文献中其他作品的区分因素,我们专注于阵阵近场,让我们能够理解和暴露RIS的有希望的潜力。后者主要暗示RIS的物理尺寸与RIS位置的菲涅耳区域的大小之间的相互作用,突出了相位的主要作用。具体地,点状(或零维)常规散射表征导致众所周知的依赖性与距离的第四功率。相反,其近场区域的表征分别在与二维(平面)和一维(线性)RIS的距离的依赖关系之后暴露反射行为。此外,实现优化相位控制的智能RI可以导致四个,矛盾的,在其近场附近运行时的自由空间传播的功率指数。所有这些功能都对RIS概念的实际适用性产生了重大影响。作为这项工作的一项贡献,本文通过在所有这些操作区域的情况下呈现无线链路的完整信号表征来结束。

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