Tang Rui, Zhu Tong, Zhang Ruizhi, He Jinpu. DESIGN OF POWER CONTROL IN B5G TWO-WAY FULL-DUPLEX RELAY SYSTEMS BASED ON NON-ORTHOGONAL MULTIPLE ACCESS[J]. Computer Applications and Software, 2025, 42(4): 92-99. DOI: 10.3969/j.issn.1000-386x.2025.04.015
Citation: Tang Rui, Zhu Tong, Zhang Ruizhi, He Jinpu. DESIGN OF POWER CONTROL IN B5G TWO-WAY FULL-DUPLEX RELAY SYSTEMS BASED ON NON-ORTHOGONAL MULTIPLE ACCESS[J]. Computer Applications and Software, 2025, 42(4): 92-99. DOI: 10.3969/j.issn.1000-386x.2025.04.015

DESIGN OF POWER CONTROL IN B5G TWO-WAY FULL-DUPLEX RELAY SYSTEMS BASED ON NON-ORTHOGONAL MULTIPLE ACCESS

  • In two-way full-duplex relay systems based on non-orthogonal multiple access(NOMA)for Beyond the Fifth Generation(B5G)networks, we propose a power control mechanism using successive convex approximation(SCA)to coordinate co-channel interference and improve spectral efficiency, which efficiently obtains suboptimal solutions for the original non-convex problem within polynomial time. To satisfy the low-latency requirements of B5G mobile networks, we further design a deep neural network(DNN)-based online power control mechanism. Simulations verify the effectiveness of both mechanisms, showing that the DNN-based approach achieves comparable performance to the SCA-based method while significantly reducing online computational time.
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