A Survey of Rate-optimal Power Domain NOMA with Enabling Technologies of Future Wireless Networks
Omar Maraqa, Aditya S. Rajasekaran (Member, IEEE), Saad Al-Ahmadi,, Halim Yanikomeroglu (Fellow, IEEE), Sadiq M. Sait (Senior Member, IEEE)

TL;DR
This survey reviews rate optimization in power domain NOMA integrated with advanced wireless technologies for future B5G networks, highlighting recent methods, challenges, and future directions.
Contribution
It provides a comprehensive overview of rate optimization strategies for PD-NOMA combined with key B5G technologies, including system models, optimization techniques, and machine learning applications.
Findings
Various optimization methods improve achievable rates in PD-NOMA systems.
Integration with technologies like MIMO, mmWave, and UAV enhances network performance.
Future research directions include machine learning-based optimization approaches.
Abstract
The ambitious high data-rate applications in the envisioned future B5G networks require new solutions, including the advent of more advanced architectures than the ones already used in 5G networks, and the coalition of different communications schemes and technologies to enable these applications requirements. Among the candidate schemes for future wireless networks are NOMA schemes that allow serving more than one user in the same resource block by multiplexing users in other domains than frequency or time. In this way, NOMA schemes tend to offer several advantages over OMA schemes such as improved user fairness and spectral efficiency, higher cell-edge throughput, massive connectivity support, and low transmission latency. With these merits, NOMA-enabled transmission schemes are being increasingly looked at as promising multiple access schemes for future wireless networks. When the…
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