Joint Spatial Division and Multiplexing for FDD in Intelligent Reflecting Surface-assisted Massive MIMO Systems

Intelligent reflecting surface (IRS) is a promising technology to deliver the higher spectral and energy requirements in fifth-generation (5G) and beyond wireless networks while shaping the propagation environment. Such a design can be further enhanced with massive multiple-input-multiple-output (mMIMO) characteristics towards boosting the network performance. However, channel reciprocity, assumed in 5G systems such as mMIMO, appears to be questioned in practice by recent studies on IRS. Hence, contrary to previous works, we consider frequency division duplexing (FDD) to study the performance of an IRS-assisted mMIMO system. However, FDD is not suitable for large number of antennas architectures. For this reason we employ the joint spatial division and multiplexing (JSDM) approach exploiting the structure of the correlation of the channel vectors to reduce the channel state information (CSI) uplink feedback, and thus, allowing the use even of a large number of antennas at the base station. JSDM entails dual-structured precoding and clustering the user equipments (UEs) with the same covariance matrix into groups. Specifically, we derive the sum spectral efficiency (SE) based on statistical CSI in terms of large-scale statistics by using the deterministic equivalent (DE) analysis while accounting for correlated Rayleigh fading. Subsequently, we formulate the optimization problem concerning the sum SE with respect to the reflecting beamforming matrix (RBM) and the total transmit power, which can be performed at every several coherence intervals by taking advantage of the slow-time variation of the large-scale statistics. This notable property contributes further to the decrease of the feedback overhead.

READ FULL TEXT

page 6

page 7

page 8

page 9

page 10

page 11

page 12

page 14

research
09/09/2022

Impact of Channel Aging on Reconfigurable Intelligent Surface Aided Massive MIMO Systems with Statistical CSI

The incorporation of reconfigurable intelligent surface (RIS) into massi...
research
11/08/2019

Channel Estimation for Intelligent Reflecting Surface Assisted Multiuser Communications

In the intelligent reflecting surface (IRS) assisted communication syste...
research
10/15/2021

Coverage Probability of Double-IRS Assisted Communication Systems

In this paper, we focus on the coverage probability of a double-intellig...
research
02/10/2021

Intelligent Reflecting Surface-assisted MU-MISO Systems with Imperfect Hardware: Channel Estimation, Beamforming Design

Most works in IRS-assisted systems have ignored the impact of the inevit...
research
12/19/2020

Intelligent Reflecting Surfaces: Sum-Rate Optimization Based on Statistical CSI

In this paper, we consider a multi-user multiple-input multiple-output (...
research
02/18/2021

Coverage Probability of Distributed IRS Systems Under Spatially Correlated Channels

This paper suggests the use of multiple distributed intelligent reflecti...
research
09/15/2023

Achievable Rate of a STAR-RIS Assisted Massive MIMO System Under Spatially-Correlated Channels

Reconfigurable intelligent surfaces (RIS)-assisted massive multiple-inpu...

Please sign up or login with your details

Forgot password? Click here to reset