Reconfigurable Intelligent Surface Empowered Downlink Non-Orthogonal Multiple Access
Min Fu, Yong Zhou, Yuanming Shi, and Khaled B. Letaief

TL;DR
This paper introduces a novel RIS-empowered NOMA system that optimizes power efficiency by jointly adjusting beamforming and phase shifts, overcoming limitations of traditional NOMA assumptions.
Contribution
It proposes an alternating optimization framework with a DC algorithm for joint beamforming and phase shift design in RIS-NOMA networks, enhancing power efficiency.
Findings
RIS deployment improves channel gain differences among users.
The proposed optimization reduces total transmit power.
The DC-based method converges reliably and outperforms existing approaches.
Abstract
Power-domain non-orthogonal multiple access (NOMA) has become a promising technology to exploit the new dimension of the power domain to enhance the spectral efficiency of wireless networks. However, most existing NOMA schemes rely on the strong assumption that users' channel gains are quite different, which may be invalid in practice. To unleash the potential of power-domain NOMA, we will propose a reconfigurable intelligent surface (RIS)-empowered NOMA network to introduce desirable channel gain differences among the users by adjusting the phase shifts at RIS. Our goal is to minimize the total transmit power by jointly optimizing the beamforming vectors at the base station and the phase-shift matrix at the RIS. To address the highly coupled optimization variables, we present an alternating optimization framework to decompose the non-convex bi-quadratically constrained quadratic…
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Taxonomy
TopicsAdvanced Wireless Communication Technologies · Optical Wireless Communication Technologies · Indoor and Outdoor Localization Technologies
