On the Mobility Analysis of UE-Side Beamforming for Multi-Panel User Equipment in 5G-Advanced
Abstract
Frequency range 2 (FR2) has become an integral part of 5G networks to fulfill the ever-increasing demand for data hungry-applications. However, radio signals in FR2 experience high path and diffraction loss, which also pronounces the problem of inter and intra-cell interference. As a result, both the serving and target links are affected, leading to radio link failures (RLFs) and handover failures (HOFs), respectively. To address this issue, multi-panel user equipment (MPUE) is proposed for 5G-Advanced whereby multiple spatially distinct antenna panels are integrated into the UE to leverage gains from antenna directivity. It also opens the possibility of using UE-side Rx-beamforming for each panel. In this paper, three different Rx-beamforming approaches are proposed to improve the serving link, the target link, and the handover process for an MPUE equipped with three directional panels. Thereafter, the mobility performance is analyzed in a system-level simulation for a multi-beam FR2 network. Results have shown that the proposed schemes can help reduce RLFs by 53\% and HOFs by 90\%.
Keywords
Cite
@article{arxiv.2306.14632,
title = {On the Mobility Analysis of UE-Side Beamforming for Multi-Panel User Equipment in 5G-Advanced},
author = {Subhyal Bin Iqbal and Salman Nadaf and Umur Karabulut and Philipp Schulz and Anna Prado and Gerhard P. Fettweis and Wolfgang Kellerer},
journal= {arXiv preprint arXiv:2306.14632},
year = {2023}
}
Comments
7 pages, 6 figures. Accepted for presentation at the 2023 Annual IEEE International Symposium on Personal, Indoor and Mobile Radio Communications (IEEE PIMRC 2023), to be held in Toronto, Canada. arXiv admin note: text overlap with arXiv:2203.14763