论文标题
6G的近场通信:基本面,挑战,潜在和未来的方向
Near-Field Communications for 6G: Fundamentals, Challenges, Potentials, and Future Directions
论文作者
论文摘要
非常大的天线阵列(ELAA)是第六代移动网络(6G)的几种关键候选技术的共同特征,例如超质量的多重输入 - 多输入量输出(UM-MIMO),无细胞的无细胞大型MIMO,可重新配置的智能表面(RIS)和Terahertz Communication。由于ELAA的天线数量很大,因此需要通过近场球形波对电磁辐射场进行建模,这与5G大型MIMO的常规基于平面波的辐射模型相反。结果,在6G无线网络中,近场通信将成为必不可少的。在本文中,我们系统地研究了新兴的近场通信技术。首先,我们介绍了近场通信的基础知识和指标,以确定典型的通信方案中的近场范围。然后,我们通过将它们分为两类,即应对挑战的技术和利用近场区域的潜力的技术,研究了针对近场通信的最新研究。讨论了他们的原则,最新进度,利弊。更重要的是,指出了几个开放问题和未来的近场通信研究方向。我们认为,本文将激发6G近场通信的重要研究主题的更多创新。
Extremely large antenna array (ELAA) is a common feature of several key candidate technologies for sixth-generation mobile networks (6G), such as ultra-massive multiple-input-multiple-output (UM-MIMO), cell-free massive MIMO, reconfigurable intelligent surface (RIS), and terahertz communications. Since the number of antennas is very large for ELAA, the electromagnetic radiation field needs to be modeled by near-field spherical waves, which is opposed to the conventional planar-wave-based radiation model of 5G massive MIMO. As a result, near-field communications will become essential in 6G wireless networks. In this article, we systematically investigate the emerging near-field communication techniques. Firstly, we present the fundamentals of near-field communications and the metric to determine the near-field ranges in typical communication scenarios. Then, we investigate recent studies specific to near-field communications by classifying them into two categories, i.e., techniques addressing the challenges and those exploiting the potentials in near-field regions. Their principles, recent progress, pros and cons are discussed. More importantly, several open problems and future research directions for near-field communications are pointed out. We believe that this article would inspire more innovations for this important research topic of near-field communications for 6G.