Joint Beamforming Design for RIS-aided AmBC-enabled MISO NOMA Networks

Raj Kumar Thenua,Abhay S. Gandhi

Wireless Personal Communications(2023)

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摘要
In the context of “beyond 5 G" (B5G) mobile communication, a better quality of service (QoS) with a minimum power budget is one of the prime requirements. To improve QoS or sum rate, utilizing reconfigurable intelligent surfaces (RIS) in a non-orthogonal multiple access (NOMA) network is an effective approach. This paper focuses on a RIS-assisted backscatter-enabled NOMA network where the base station (BS) has to serve a backscatter device (BD) and dead-zone users simultaneously by achieving the maximum possible sum rate in a given power budget. With the help of joint optimization at BS, RIS, and BD, the beamforming vectors, RIS phase shift matrix (PSM), and power splitting (PS) ratio, respectively, are optimized such that the user’s QoS and BD’s energy harvesting constraints can be achieved for a given power constraint while increasing the sum rate for dead zone users. Particularly, the beamforming vectors and the phases of the RIS elements are alternately optimized using a lower bound, semidefinite relaxation (SDR), and Gaussian randomization techniques until they reach convergence. According to simulation results, the proposed scheme (RIS-BD-NOMA) always performs better than the baseline schemes, RIS-NOMA with random phases, and RIS-NOMA with optimized phases.
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关键词
Phase shift optimization,Reconfigurable intelligent surfaces,Non-orthogonal multiple access,Backscatter communication
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