Reconfigurable Refractive Surfaces: An Energy-Efficient Way to Holographic MIMO

07/06/2022
by   Shuhao Zeng, et al.
0

Holographic Multiple Input Multiple Output (HMIMO), which integrates massive antenna elements into a compact space to achieve a spatially continuous aperture, plays an important role in future wireless networks. With numerous antenna elements, it is hard to implement the HMIMO via phased arrays due to unacceptable power consumption. To address this issue, reconfigurable refractive surface (RRS) is an energy efficient enabler of HMIMO since the surface is free of expensive phase shifters. Unlike traditional metasurfaces working as passive relays, the RRS is used as transmit antennas, where the far-field approximation does not hold anymore, urging a new performance analysis framework. In this letter, we first derive the data rate of an RRS-based single-user downlink system, and then compare its power consumption with the phased array. Simulation results verify our analysis and show that the RRS is an energy-efficient way to HMIMO.

READ FULL TEXT
research
12/08/2019

Reconfigurable Intelligent Surface-Based Wireless Communication: Antenna Design, Prototyping and Experimental Results

One of the key enablers of future wireless communications is constituted...
research
11/26/2019

Optimal Design of Energy-Efficient Cell-Free Massive MIMO: Joint Power Allocation and Load Balancing

A large-scale distributed antenna system that serves the users by cohere...
research
06/04/2021

Optimal Transmit Power and Antenna Selection to Achieve Energy Efficient and Low Complexity in fifth generation Massive MIMO Systems

This paper investigates joint antenna selection and optimal transmit pow...
research
02/20/2019

Reflect- and Transmit-Array Antennas for Scalable and Energy-Efficient mmWave Massive MIMO

Hybrid analog-digital architectures are promising candidates for impleme...
research
04/11/2022

Multi-User Wireless Communications with Holographic MIMO Surfaces: A Convenient Channel Model and Spectral Efficiency Analysis

The multi-user Holographic Multiple-Input and Multiple-Output Surface (M...
research
09/14/2018

Energy Efficient Multi-User MISO Communication using Low Resolution Large Intelligent Surfaces

We consider a multi-user Multiple-Input Single-Output (MISO) communicati...
research
07/19/2021

Compact User-Side Reconfigurable Intelligent Surfaces for Uplink Transmission

Large-scale antenna arrays employed by the base station (BS) constitute ...

Please sign up or login with your details

Forgot password? Click here to reset