Millimeter-wave (mmWave) communications is considered as a key enabler towards the realization of next-generation wireless networks, due to the abundance of available spectrum at mmWave frequencies. However, mmWave suffers from high free-space path-loss and poor scattering resulting in mostly line-of-sight (LoS) channels which result in a lack of coverage. Reconfigurable intelligent surfaces (RIS), as a new paradigm, have the potential to fill the coverage holes by shaping the wireless channel. In this paper, we propose a novel approach for designing RIS with elements arranged in a uniform planar array (UPA) structure. In what we refer to as multi-beamforming, We propose and design RIS such that the reflected beam comprises multiple disjoint lobes. Moreover, the beams have optimized gain within the desired angular coverage with fairly sharp edges avoiding power leakage to other regions. We provide a closed-form low-complexity solution for the multi-beamforming design. We confirm our theoretical results by numerical analysis.
翻译:毫米波(mmWave)通信被认为是实现下一代无线网络的关键促进因素,因为毫米Wave频率的频谱丰富。然而,毫米瓦因自由空间路径损失和散射不力而导致高空路径损失和散射不力,导致缺乏覆盖。可重新配置的智能表面(RIS)作为一种新的范式,有可能通过塑造无线频道来填补覆盖洞。在本文中,我们提出一种新的方法,用一个统一的平面阵列结构(UPA)中安排的元素来设计RIS。在所谓的多波形阵列结构中,我们提出并设计反映的光束包含多条不连接的圆形线的RIS。此外,光束在理想的角覆盖范围内取得了最佳的收益,其边缘相当尖锐,避免向其他地区的电源泄漏。我们为多波形阵列设计提供了一种封闭式的低相兼容性解决方案。我们通过数字分析确认了我们的理论结果。