Energy-Efficient Beamforming and Resource Optimization for STAR-IRS Enabled Hybrid-NOMA 6G Communications

被引:15
|
作者
Asif, Muhammad [1 ]
Ihsan, Asim [2 ]
Khan, Wali Ullah [3 ]
Ali, Zain [4 ]
Zhang, Shengli [1 ]
Wu, Sissi Xiaoxiao [1 ]
机构
[1] Shenzhen Univ, Coll Elect & Informat Engn, Guangdong Key Lab Intelligent Informat Proc, Shenzhen 518060, Peoples R China
[2] Bangor Univ, Sch Comp Sci & Elect Engn, Bangor LL57 1UT, Wales
[3] Univ Luxembourg, Interdisciplinary Ctr Secur Reliabil & Trust, Luxembourg 1855, Luxembourg
[4] Univ Calif Santa Cruz, Dept Elect & Comp Engn, Santa Cruz, CA USA
关键词
Non-orthogonal multiple access; intelligent reflecting surfaces; simultaneous transmission and reflection; resource optimization; energy-efficient beamforming; ALLOCATION; SURFACES; TRANSMISSION; DESIGN;
D O I
10.1109/TGCN.2023.3281414
中图分类号
TN [电子技术、通信技术];
学科分类号
0809 ;
摘要
In this manuscript, we propose an energy-efficient optimization framework for a multi-cluster simultaneous transmitting and reflecting intelligent reflecting surfaces (STAR-IRS) enabled time-division multiple-access (TDMA) based hybrid-NOMA system to realize the future sixth-generation (6G) wireless communication systems. Specifically, the energy-efficiency maximization is achieved by optimizing the successive-interference cancellation (SIC) decoding order, time-allocation, and active-beamforming vectors at the transmitter, as well as transmission and reflection coefficients at the STAR-IRS under quality-of-service (QoS), conservation of energy, time-allocation, phase-shifts, and SIC-decoding constraints. Moreover, the proposed alternating optimization algorithm tackles the considered highly non-convex optimization problem in four steps. In first step, for computing the SIC-decoding order of NOMA users, an efficient optimization technique is proposed which maximizes the sum of combined channel gains by optimizing the transmission and reflection beamforming vectors of the considered STAR-IRS assisted hybrid-NOMA system. Further, in second step, an optimal time-allocation for each cluster in transmission and reflection region is computed for given SIC-decoding order. With decoding order and time-allocation in hand, active-beamforming vectors are computed by exploiting the sequential-convex approximation (SCA) and second-order-conic programming (SOCP) in third step. Finally, in the fourth step, the transmission and reflection coefficients of STAR-IRS are computed by transforming the non-convex optimization problem into a semi-definite programming (SDP) problem. The numerical simulation results demonstrate that the proposed optimization framework exhibits high energy efficiency performance and converges within a few iterations.
引用
收藏
页码:1356 / 1368
页数:13
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