Affiliation:
1. Department of Electronic Engineering, Gachon University, Seongnam 13120, Republic of Korea
2. Division of Interdisciplinary Studies in Cultural Intelligence, Dongduk Women’s University, Seoul 02784, Republic of Korea
Abstract
Reconfigurable intelligent surface-aided communication systems have been intensively investigated to improve capacity, coverage, and energy efficiency via optimal controlling of phase shifts for passive reflecting elements. However, there are few studies on cooperative transmission incorporating RIS in TDMA systems, because RIS reflects all the incident signals, and it inadvertently leads to a boost in interference signals. In this paper, we propose RIS-assisted cooperative time-division multiple access, in which the required SINR of all users is guaranteed as much as possible by opportunistic use of RIS for cooperative transmission. The proposed scheme’s primary function is that some time slots, i.e., cooperative time slots, serve a pair of users, i.e., a strong- and a weak-channel-conditioned user, using RIS. To support this functionality, we propose scheduling for non-cooperative and cooperative time slots, user pairing for scheduled cooperative time slots, and transmit beamforming vector design for the pair of UEs in each cooperative time slot. The simulation and numerical results demonstrate that the proposed scheme guarantees QoS for all UE as much as possible and minimizes the remaining required capacity indicating the amount of capacity that was not achieved compared with the required capacity.
Funder
National Research Foundation of Korea
Subject
Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry
Reference26 articles.
1. Secrecy-Energy Efficient Hybrid Beamforming for Satellite-Terrestrial Integrated Networks;Lin;IEEE Trans. Commun.,2021
2. Supporting IoT with Rate-Splitting Multiple Access in Satellite and Aerial-Integrated Networks;Lin;IEEE Internet Things J.,2021
3. Joint Waveform Design and Multiuser Detection in Symbiotic Ambient Backscatter NOMA Systems;Wang;IEEE Internet Things J.,2023
4. Lin, Z., Niu, H., An, K., Hu, Y., Li, D., Wang, J., and Al-Dhahir, N. (2023). Pain without Gain: Destructive Beamforming from A Malicious RIS Perspective in IoT Networks. IEEE Internet Things J., early access.
5. Refracting RIS-aided Hybrid Satellite-Terrestrial Relay Networks: Joint Beamforming Design and Optimization;Lin;IEEE Trans. Aerosp. Electron. Syst.,2022
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