Optimization of Reconfigurable Intelligent Surfaces Through Trace Maximization

09/13/2021
by   Akbar Sayeed, et al.
0

Reconfigurable Intelligent Surfaces (RIS) have received significant attention recently as an innovation for enhanced connectivity, capacity, and energy efficiency in future wireless networks. Recent works indicate that such RIS-augmented communications can significantly enhance performance by intelligently shaping the characteristics of the multipath propagation environment to focus the energy in a desired direction and to circumvent impediments such as blockage, especially for communication at millimeter-wave (mmW), Terahertz (THz) and higher frequencies. In this paper, we investigate optimized (amplitude and phase) RIS design in a point-to-point multipath MIMO link and study the impact on link capacity under the assumption of perfect channel state information at the transmitter (TX), receiver (RX) and RIS. Specifically, we propose RIS design based on the maximization of the trace of the composite TX-RIS-RX link matrix which is a measure of the average power at the RX. We propose two RIS designs: a diagonal RIS matrix, and a general RIS matrix representing a more advanced architecture. The optimum design, in both cases, corresponds to calculating the dominant eigenvector of certain Hermitian matrices induced by the component channel matrices. We illustrate the capacity performance of the optimized RIS designs and compare them to a baseline design (random amplitudes and phases) and a recently proposed low-complexity phase-only design. We present results for sparse and rich multipath, and also consider the impact of line-of-sight paths. Our results show that while all designs offer comparable capacity at high signal-to-noise ratios (SNRs), the proposed optimum designs offer substantial gains at lower SNRs.

READ FULL TEXT
research
03/05/2020

Overhead-Aware Design of Reconfigurable Intelligent Surfaces in Smart Radio Environments

Reconfigurable intelligent surfaces have emerged as a promising technolo...
research
07/15/2020

On The Optimal Number of Reflecting Elements for Reconfigurable Intelligent Surfaces

This work considers a point-to-point link where a reconfigurable intelli...
research
09/16/2021

Capacity Optimization using Reconfigurable Intelligent Surfaces: A Large System Approach

Reconfigurable Intelligent Surfaces (RISs), comprising large numbers of ...
research
10/31/2019

Channel Capacity Optimization Using Reconfigurable Intelligent Surfaces in Indoor mmWave Environments

Indoor millimeter-wave (mmWave) environment channels are typically spars...
research
08/20/2022

Reconfigurable Intelligent Surfaces and Capacity Optimization: A Large System Analysis

Reconfigurable Intelligent Surfaces (RISs), comprising large numbers of ...
research
02/06/2020

Using Intelligent Reflecting Surfaces for Rank Improvement in MIMO Communications

An intelligent reflecting surface (IRS), consisting of reconfigurable me...
research
04/13/2023

Low Complexity Optimization for Line-of-Sight RIS-Aided Holographic Communications

The synergy of metasurface-based holographic surfaces (HoloS) and reconf...

Please sign up or login with your details

Forgot password? Click here to reset