Exploiting the Depth and Angular Domains for Massive Near-Field Spatial Multiplexing

Parisa Ramezani, Alva Kosasih, Amna Irshad, Emil Björnson
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引用次数: 1

Abstract

In this article, we present our vision for how extremely large aperture arrays (ELAAs), equipped with hundreds or thousands of antennas, can play a major role in future 6G networks by enabling a remarkable increase in data rates through spatial multiplexing of a massive number of data streams to both a single user and many simultaneous users. Specifically, with the quantum leap in the array aperture size, the users will be in the so-called radiative near-field region of the array, where previously negligible physical phenomena dominate the propagation conditions and give the channel matrices more favorable properties. This article presents the foundational properties of communication in the radiative near-field region and then exemplifies how these properties enable two unprecedented spatial multiplexing schemes: depth-domain multiplexing of multiple users and angular multiplexing of data streams to a single user. We also highlight research challenges and open problems that require further investigation.
利用深度和角度域实现大规模近场空间复用
在本文中,我们提出了我们的愿景,即配备数百或数千个天线的超大孔径阵列(ELAAs)如何在未来的6G网络中发挥重要作用,通过向单个用户和多个同时用户提供大量数据流的空间复用来实现数据速率的显着提高。具体来说,随着阵列孔径尺寸的巨大飞跃,用户将处于阵列的所谓辐射近场区域,在那里,以前可以忽略不计的物理现象主导了传播条件,并赋予通道矩阵更有利的性质。本文介绍了辐射近场区域通信的基本特性,然后举例说明了这些特性如何实现两种前所未有的空间复用方案:多用户的深度域复用和数据流到单个用户的角度复用。我们还强调了需要进一步研究的研究挑战和开放问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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