6G Radio Channel Sounding: Challenges and Potential Solutions

Approved

Classifications

MinEdu publication type
A1 Journal article (peer-reviewed)
Definition
Article
Target group
Scientific
Peer reviewed
Peer-reviewed
Article type
Journal article
Host publication type
Journal

Authors of the publication

Number of authors
8
Authors
Fan, Wei; Sun, Hao; Lyu, Yejian; Zhang, Xiang; Borrill, Jonathan; Zhang, Jianhua; Derat, Benoit; Zhang, Fengchun
Local authors

Publication channel information

Title of journal/series
IEEE wireless communications
ISSN (print)
1536-1284
ISSN (electronic)
1558-0687
ISSN (linking)
1536-1284
Publisher
IEEE
Publication forum ID
57591
Publication forum level
2
Internationality
Yes

Detailed publication information

Publication year
2025
Reporting year
2025
Journal/series volume number
32
Journal/series issue number
1
Page numbers
100-106
DOI
10.1109/MWC.001.2400057
Language of publication
English

Co-publication information

International co-publication
Yes
Co-publication with a company
Yes

Availability

Link to online publication

Classification and additional information

MinEdu field of science classification
213 Electronic, automation and communications engineering, electronics
Keywords
Antenna measurements; 6G mobile communication; Wireless communication; Time-frequency analysis; Phase measurement; Machine learning; Frequency diversity; Digital twins; Arrays; Antenna arrays

Funding information

Funding information in the publication
This work was supported in part by the start-up Research Fund of Southeast University under Grant RF1028623309, in part by the National Natural Science Foundation of China (No.62341128), Beijing Natural Science Foundation (L243002), the 6G-SHINE project, which has received funding from the Smart Networks and Services Joint Undertaking (SNS JU) under the European Union's Horizon Europe research and innovation programme, and in part by the Anristu-funded project "Novel Channel Sounding Techniques for 6G."

Source database ID

WoS ID
WOS:001416740100019