Performance Analysis of STAR-RIS-Assisted Cell-Free Massive MIMO Systems with Electromagnetic Interference and Phase Errors
Jun Qian, Ross Murch, and Khaled B. Letaief

TL;DR
This paper analyzes the impact of electromagnetic interference and phase errors on STAR-RIS-assisted cell-free massive MIMO systems, proposing mitigation techniques and deriving spectral efficiency expressions to enhance system performance in challenging conditions.
Contribution
It introduces a projected gradient descent algorithm for STAR-RIS coefficient design and derives closed-form spectral efficiency expressions considering EMI and phase errors.
Findings
Projected GD algorithm improves NMSE by nearly 30%
Spectral efficiency can be increased by more than 10% with mitigation techniques
STAR-RIS outperforms conventional RISs in high impairment environments
Abstract
Simultaneous Transmitting and Reflecting Reconfigurable Intelligent Surfaces (STAR-RISs) are being explored for sixth-generation (6G) wireless networks. A promising configuration for their deployment is within cell-free massive multiple-input multiple-output (MIMO) systems. However, despite the advantages that STAR-RISs could bring, challenges such as electromagnetic interference (EMI) and phase errors may lead to significant performance degradation. In this paper, we investigate the impact of EMI and phase errors on STAR-RIS-assisted cell-free massive MIMO systems and propose techniques to mitigate these effects. We introduce a tailored projected gradient descent (GD) algorithm for STAR-RIS coefficient matrix design by minimizing the local channel estimation normalized mean square error (NMSE). We also derive the novel closed-form expressions of the uplink and downlink spectral…
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Taxonomy
TopicsSatellite Communication Systems · Advanced Wireless Communication Technologies · Wireless Communication Networks Research
