A Survey of Beam Management for mmWave and THz Communications Towards 6G

Fuente: arXiv
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Main Authors: Xue, Qing, Ji, Chengwang, Ma, Shaodan, Guo, Jiajia, Xu, Yongjun, Chen, Qianbin, Zhang, Wei
Format: Preprint
Published: 2023
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author Xue, Qing
Ji, Chengwang
Ma, Shaodan
Guo, Jiajia
Xu, Yongjun
Chen, Qianbin
Zhang, Wei
author_facet Xue, Qing
Ji, Chengwang
Ma, Shaodan
Guo, Jiajia
Xu, Yongjun
Chen, Qianbin
Zhang, Wei
contents Communication in millimeter wave (mmWave) and even terahertz (THz) frequency bands is ushering in a new era of wireless communications. Beam management, namely initial access and beam tracking, has been recognized as an essential technique to ensure robust mmWave/THz communications, especially for mobile scenarios. However, narrow beams at higher carrier frequency lead to huge beam measurement overhead, which has a negative impact on beam acquisition and tracking. In addition, the beam management process is further complicated by the fluctuation of mmWave/THz channels, the random movement patterns of users, and the dynamic changes in the environment. For mmWave and THz communications toward 6G, we have witnessed a substantial increase in research and industrial attention on artificial intelligence (AI), reconfigurable intelligent surface (RIS), and integrated sensing and communications (ISAC). The introduction of these enabling technologies presents both open opportunities and unique challenges for beam management. In this paper, we present a comprehensive survey on mmWave and THz beam management. Further, we give some insights on technical challenges and future research directions in this promising area.
format Preprint
id arxiv_https___arxiv_org_abs_2308_02135
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle A Survey of Beam Management for mmWave and THz Communications Towards 6G
Xue, Qing
Ji, Chengwang
Ma, Shaodan
Guo, Jiajia
Xu, Yongjun
Chen, Qianbin
Zhang, Wei
Information Theory
Systems and Control
Communication in millimeter wave (mmWave) and even terahertz (THz) frequency bands is ushering in a new era of wireless communications. Beam management, namely initial access and beam tracking, has been recognized as an essential technique to ensure robust mmWave/THz communications, especially for mobile scenarios. However, narrow beams at higher carrier frequency lead to huge beam measurement overhead, which has a negative impact on beam acquisition and tracking. In addition, the beam management process is further complicated by the fluctuation of mmWave/THz channels, the random movement patterns of users, and the dynamic changes in the environment. For mmWave and THz communications toward 6G, we have witnessed a substantial increase in research and industrial attention on artificial intelligence (AI), reconfigurable intelligent surface (RIS), and integrated sensing and communications (ISAC). The introduction of these enabling technologies presents both open opportunities and unique challenges for beam management. In this paper, we present a comprehensive survey on mmWave and THz beam management. Further, we give some insights on technical challenges and future research directions in this promising area.
title A Survey of Beam Management for mmWave and THz Communications Towards 6G
topic Information Theory
Systems and Control
url https://arxiv.org/abs/2308.02135