在 6G 中利用多分辨率到达角估计减少初始接入延迟的新框架

Sridhar Kondabathini, Lalit Pathak, Kiran Bynam, Jyotirmov Karjee
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引用次数: 0

摘要

在基于毫米波混合波束成形的 5G 新无线电(NR)天线系统中,同时波束的数量受到射频(RF)链数量的限制(也限制了同时对来自多个方向的信号进行到达角(AoA)估算)。基站(BS)可以通过适当的信道测量来识别每个用户设备(UE)的天线波束。然而,这个过程非常耗时,因为基站同时使用的天线波束数量有限,而且为了提高波束搜索能力而采用了窄波束,因此必须检查大量波束方向(或 AoA)。通过本手稿,我们提出了一种新颖的想法,可同时对来自单个射频链不同方向的信号进行 AoA 估算。这项技术有助于绕过发射波束扫描程序,与传统系统相比,UE 找到发射波束的初始接入延迟缩短了约 7 倍,从而提高了关键性能指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Framework to Reduce the Initial Access Latency by Utilizing Multi Resolution Angle of Arrival Estimation in 6G
In the 5G New Radio (NR) millimeter(mm) wave hybrid beamforming based antenna systems, the number of simultaneous beams limited by the number of Radio Frequency (RF) chains (also limits simultaneous Angle of Arrival (AoA) estimation of signals coming from multiple directions). The Base Station (BS) can identify antenna beams for each user equipment (UE) through appropriate channel measurements. However, this process is very time consuming since BS with limited number of simultaneous antenna beams has to examine a large number of beam directions (or AoA) due to the narrow beams employed to enhance the beam searching capability. Through this manuscript we propose a novel idea to enable simultaneous AoA estimation of signals coming from different directions for a single RF chain. This technique helps to bypass transmit beam sweeping procedure, by which the UE initial access latency to find the transmit beam reduces by approximately 7 times compared to legacy systems, and this improves the Key Performance Indices.
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