Wireless Communications Through Reconfigurable Intelligent Surfaces

Беспроводная связь с использованием реконфигурируемых интеллектуальных поверхностей
Ertuğrul Başar, Mohamed‐Slim Alouini, Mérouane Debbah, Rui Zhang, Marco Di Renzo, Julien de Rosny
2019-01-01

6G wireless networksperformance limitsreconfigurable intelligent surfaceswavefront controlwireless propagation
The future of mobile communications looks exciting with the potential new use cases and challenging requirements of future 6th generation (6G) and beyond wireless networks. Since the beginning of the modern era of wireless communications, the propagation medium has been perceived as a randomly behaving entity between the transmitter and the receiver, which degrades the quality of the received signal due to the uncontrollable interactions of the transmitted radio waves with the surrounding objects. The recent advent of reconfigurable intelligent surfaces in wireless communications enables, on the other hand, network operators to control the scattering, reflection, and refraction characteristics of the radio waves, by overcoming the negative effects of natural wireless propagation. Recent results have revealed that reconfigurable intelligent surfaces can effectively control the wavefront, e.g., the phase, amplitude, frequency, and even polarization, of the impinging signals without the need of complex decoding, encoding, and radio frequency processing operations. Motivated by the potential of this emerging technology, the present article is aimed to provide the readers with a detailed overview and historical perspective on state-of-the-art solutions, and to elaborate on the fundamental differences with other technologies, the most important open research issues to tackle, and the reasons why the use of reconfigurable intelligent surfaces necessitates to rethink the communication-theoretic models currently employed in wireless networks. This article also explores theoretical performance limits of reconfigurable intelligent surface-assisted communication systems using mathematical techniques and elaborates on the potential use cases of intelligent surfaces in 6G and beyond wireless networks.
1
Reconfigurable intelligent surfaces are identified as a promising enabler for use cases in 6G and beyond, while significant open research issues remain.
2
Reconfigurable intelligent surfaces enable operators to control radio-wave scattering, reflection, and refraction, mitigating adverse effects of natural wireless propagation.
3
The article analyzes theoretical performance limits of reconfigurable-intelligent-surface-assisted communications using mathematical techniques.
4
The technology introduces fundamental differences from existing wireless solutions and requires rethinking communication-theoretic models used for wireless networks.
5
These surfaces can control impinging-signal wavefront properties, including phase, amplitude, frequency, and polarization, without complex decoding, encoding, or radio-frequency processing.

Reconfigurable intelligent surfaces (RIS) in wireless communication systems

Wavefront control and theoretical performance limits of reconfigurable intelligent surface-assisted communications, including the effects on wireless propagation and communication-theoretic modeling

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2019-01-01
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Ertuğrul Başar
Mohamed‐Slim Alouini
Mérouane Debbah
Rui Zhang
Marco Di Renzo
Julien de Rosny
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