用于多对双向通信的ris辅助毫米波波束形成

Nariman Torkzaban, Mohammad A. (Amir) Khojastepour, Mohammad Farajzadeh-Tehrani, John S. Baras
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引用次数: 0

摘要

毫米波(mmWave)通信是实现增强型移动宽带(eMBB)的关键推动因素,这是5G及以后的关键承诺,因为毫米波频段有丰富的可用带宽。毫米波覆盖图由阴影和衰落造成的盲点组成,特别是在人口密集的城市环境中。采用大规模MIMO的波束形成主要用于解决毫米波信道中的高衰减问题。由于可重构智能表面(RISs)能够以一种节能的方式操纵入射电磁波,因此被认为是大规模MIMO系统在实现波束形成任务方面的一个很好的补充,从而有效地填补了毫米波覆盖缺口。在本文中,我们提出了一种新的RIS架构,即RIS-UPA,其中RIS元素排列在统一平面阵列(UPA)中。我们展示了RIS-UPA如何在ris辅助MIMO系统中使用,通过形成定制足迹的波束,优化主瓣增益,最小泄漏和相当锋利的边缘,来填补毫米波的覆盖空白。此外,我们提出了一种可以同时支持多个双向通信对的RIS-UPA配置。我们从理论上得到了我们设计的闭型低复杂度解,并通过大量的数值实验验证了我们的理论发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RIS-aided mmWave beam-forming for two-way communications of multiple pairs
Millimeter-wave (mmWave) communications is a key enabler towards realizing enhanced Mobile Broadband (eMBB) as a key promise of 5G and beyond, due to the abundance of bandwidth available at mmWave bands. An mmWave coverage map consists of blind spots due to shadowing and fading especially in dense urban environments. Beam-forming employing massive MIMO is primarily used to address high attenuation in the mmWave channel. Due to their ability in manipulating the impinging electromagnetic waves in an energy-efficient fashion, Reconfigurable Intelligent Surfaces (RISs) are considered a great match to complement the massive MIMO systems in realizing the beam-forming task and therefore effectively filling in the mmWave coverage gap. In this paper, we propose a novel RIS architecture, namely RIS-UPA where the RIS elements are arranged in a Uniform Planar Array (UPA). We show how RIS-UPA can be used in an RIS-aided MIMO system to fill the coverage gap in mmWave by forming beams of a custom footprint, with optimized main lobe gain, minimum leakage, and fairly sharp edges. Further, we propose a configuration for RIS-UPA that can support multiple two-way communication pairs, simultaneously. We theoretically obtain closed-form low-complexity solutions for our design and validate our theoretical findings by extensive numerical experiments.
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