Vol. 17, No. 1, January 31, 2023
10.3837/tiis.2023.01.011,
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Abstract
This paper proposes a non-orthogonal multiple access (NOMA) based low-complexity relaying approach for multiuser cellular two-way relay channels (CTWRCs). In the proposed scheme, the relay detects the signal using successive interference cancellation (SIC) and re-generates the transmit signal with zero-forcing (ZF) transmit precoding. The achievable data rates of the NOMA-based multiuser two-way relaying (TWR) approach is analyzed. We further study the power allocation among different data streams to maximize the weighted sum-rate (WSR). We re-form the resultant non-convex problem into a standard monotonic program. Then, we design a polyblock outer approximation algorithm to sovle the WSR problem.The proposed optimal power allocation algorithm converges fast and it is shown that the NOMA-TWR-OPA scheme outperforms a NOMA benchmark scheme and conventional TWR schemes.
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Cite this article
[IEEE Style]
G. Li, "Optimal Power Allocation for NOMA-based Cellular Two-Way Relaying," KSII Transactions on Internet and Information Systems, vol. 17, no. 1, pp. 202-215, 2023. DOI: 10.3837/tiis.2023.01.011.
[ACM Style]
Guosheng Li. 2023. Optimal Power Allocation for NOMA-based Cellular Two-Way Relaying. KSII Transactions on Internet and Information Systems, 17, 1, (2023), 202-215. DOI: 10.3837/tiis.2023.01.011.
[BibTeX Style]
@article{tiis:38320, title="Optimal Power Allocation for NOMA-based Cellular Two-Way Relaying", author="Guosheng Li and ", journal="KSII Transactions on Internet and Information Systems", DOI={10.3837/tiis.2023.01.011}, volume={17}, number={1}, year="2023", month={January}, pages={202-215}}