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  5. Holographic MIMO Surfaces for 6G Wireless Networks: Opportunities, Challenges, and Trends

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Article
English
2020

Holographic MIMO Surfaces for 6G Wireless Networks: Opportunities, Challenges, and Trends

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0 Files

English
2020
IEEE Wireless Communications
Vol 27 (5)
DOI: 10.1109/mwc.001.1900534

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Rui Zhang
Rui Zhang

The Chinese University of Hong Kong

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Chongwen Huang
Sha Hu
George C. Alexandropoulos
+5 more

Abstract

Future wireless networks are expected to evolve towards an intelligent and software reconfigurable paradigm enabling ubiquitous communications between humans and mobile devices. They will be also capable of sensing, controlling, and optimizing the wireless environment to fulfill the visions of low-power, high-throughput, massively-connected, and low-latency communications. A key conceptual enabler that is recently gaining increasing popularity is the Holographic Multiple Input Multiple Output Surface (HMIMOS) that refers to a low-cost transformative wireless planar structure comprising of sub-wavelength metallic or dielectric scattering particles, which is capable of impacting electromagnetic waves according to desired objectives. In this article, we provide an overview of HMIMOS communications by introducing the available hardware architectures for reconfigurable such metasurfaces and their main characteristics, as well as highlighting the opportunities and key challenges in designing HMIMOS-enabled communications.

How to cite this publication

Chongwen Huang, Sha Hu, George C. Alexandropoulos, Alessio Zappone, Chau Yuen, Rui Zhang, Marco Di Renzo, Mérouane Debbah (2020). Holographic MIMO Surfaces for 6G Wireless Networks: Opportunities, Challenges, and Trends. IEEE Wireless Communications, 27(5), pp. 118-125, DOI: 10.1109/mwc.001.1900534.

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Publication Details

Type

Article

Year

2020

Authors

8

Datasets

0

Total Files

0

Language

English

Journal

IEEE Wireless Communications

DOI

10.1109/mwc.001.1900534

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