Phân tích xác suất dừng của hệ thống RSMA được hỗ trợ bởi RIS trên kênh fading Nakagami-m
Tóm tắt
Từ khóa
#Outage probability; Energy efficiency; Rate-splitting multiple access; Reconfigurable intelligent surface; Imperfect successive interference cancellation.Tài liệu tham khảo
[1]. Liang, J., Chan, T.-T., and Pan, H. "Minimizing age of collection for multiple access in wireless industrial Internet of Things", IEEE Internet of Things Journal, 11(2), 2753–2766, (2024).
[2]. Zhang, Y et al. "Multiple access integrated adaptive finite blocklength for ultra-low delay in 6G wireless networks", IEEE Transactions on Wireless Communications, 23(3), 1670–1683, (2024).
[3]. Zheng, G., Wen, M., Wen, J., and Shan, C. "Joint hybrid precoding and rate allocation for RSMA in near-field and far-field massive MIMO communications", IEEE Wireless Communications Letters, 13(4), 1034–1038, (2024).
[4]. Aswini, K. et al. "Performance analyses of intelligent reflecting surface aided downlink multi-user rate-splitting multiple access system for 6G applications", Computer Networks, 242, 110271, (2024).
[5]. Huang, C., Zappone, A., Debbah, M., and Yuen, C. "Achievable rate maximization by passive intelligent mirrors", in Proc. IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP), 3714–3718, (2018).
[6]. Huang, C., et al. "Reconfigurable intelligent surfaces for energy efficiency in wireless communication", IEEE Transactions on Wireless Communications, 18(8), 4157–4170, (2019).
[7]. Yang, Z., et al. "Energy efficient rate-splitting multiple access (RSMA) with reconfigurable intelligent surface", in IEEE International Conference on Communications Workshops, 1–6, (2020).
[8]. Z. Niu et al., “Active RIS assisted rate-splitting multiple access network: Spectral and energy efficiency tradeoff,” IEEE Wireless Commun. Lett., Vol. 12, No. 5, pp. 867–871, (2023).
[9]. Fang, T., et al. "Fully connected reconfigurable intelligent surface aided rate-splitting multiple access for multi-user multi-antenna transmission", arXiv preprint arXiv:2201.07048, (2022).
[10]. Weinberger, K et al. "Synergistic benefits in IRS- and RS-enabled C-RAN with energy-efficient clustering", IEEE Transactions on Wireless Communications, 1–1, (2022).
[11]. Bansal, A., Singh, K., and Li, C.-P. "Analysis of hierarchical rate-splitting for intelligent reflecting surfaces-aided downlink multiuser MISO communications", IEEE Open Journal of the Communications Society, 2, 785–798, (2021).
[12]. Pham, X.-N., Nguyen, B.-C., Thi, T.-D., Nguyen, V.-V., Minh, B.-V., Kim, T., Nguyen, T.-N., and Le, A.-V. "Enhancing data rate and energy efficiency of NOMA systems using reconfigurable intelligent surfaces for millimeter-wave communications", Digital Signal Processing, 151, 104553, (2024).
[13]. Do, T.-N., Kaddoum, G., Nguyen, T.-L., Da Costa, D.-B., and Haas, Z. J. "Multi-RIS-aided wireless systems: Statistical characterization and performance analysis", IEEE Transactions on Communications, 69(12), 8641–8658, (2021).
[14]. Van, Q.-N., Nguyen, B.-C., Hoang, T.-M., Nguyen, H.-M., Nguyen, V.-V., Luu, G.-T., et al. "Multiple RISs for enhancing the secrecy performance of NOMA systems over realistic Nakagami-m fading channels", IEEE Transactions on Vehicular Technology, 73(5), 6584–6599, (2023).
[15]. Jeffrey, A., and Zwillinger, D. "Table of integrals, series, and products", Academic Press, (1994).
[16]. Singh, S.-K., Agrawal, K., Singh, K., and Li, C.-P. "Outage probability and throughput analysis of UAV-assisted rate-splitting multiple access", IEEE Wireless Communications Letters, 10(11), 2528–2532, (2021).
