An Iterative Method for ASC Hybrid Precoding Structure for mmWave Ma-MIMO Systems
Subject Areas : Majlesi Journal of Telecommunication DevicesAmirreza Moradi 1 , Kamal Mohamed-pour 2 , Nasim Jafari Farsani 3
1 - Department of Electrical Engineering, K. N. Toosi University of Technology
2 - Department of Electrical Engineering, K. N. Toosi University of Technology
3 - Department of Electrical Engineering, K. N. Toosi University of Technology
Keywords:
Abstract :
[1] F. Rusek et al., “Scaling up MIMO : Opportunities and challenges with very large arrays,” IEEE Signal Process. Mag., vol. 30, no. 1, 2013.
[2] M. Maleki, K. Mohamed-Pour and M. Soltanalian, "Large-System Mutual Information Analysis of Receive Spatial Modulation in Correlated Multi-Cell Massive MIMO Networks," in IEEE Transactions on Communications, vol. 67, no. 9, pp. 6071-6084, Sept. 2019.
[3] I. Ahmed et al., “A survey on hybrid beamforming techniques in 5G: Architecture and system model perspectives,” IEEE Commun. Surv. Tutorials, vol. 20, no. 4, 2018.
[4] O. El Ayach, S. Rajagopal, S. Abu-Surra, Z. Pi, and R. W. Heath, “Spatially sparse precoding in millimeter wave MIMO systems,” IEEE Trans. Wirel. Commun., vol. 13, no. 3, 2014.
[5] A. Alkhateeb, G. Leus, and R. W. Heath, “Limited Feedback Hybrid Precoding for Multi-User Millimeter Wave Systems,” IEEE Trans. Wirel. Commun., vol. 14, no. 11, 2015.
[6] X. Yu, J. C. Shen, J. Zhang, and K. B. Letaief, “Alternating Minimization Algorithms for Hybrid Precoding in Millimeter Wave MIMO Systems,” in IEEE Journal on Selected Topics in Signal Processing, 2016, vol. 10, no. 3.
[7] Z. Pi and F. Khan, “An introduction to millimeter-wave mobile broadband systems,” IEEE Commun. Mag., vol. 49, no. 6, 2011.
[8] T. S. Rappaport et al., “Millimeter wave mobile communications for 5G cellular: It will work!,” IEEE Access, vol. 1, 2013.
[9] T. Kebede, Y. Wondie, J. Steinbrunn, H. B. Kassa, and K. T. Kornegay, “Precoding and Beamforming Techniques in mmWave-Massive MIMO: Performance Assessment,” IEEE Access, vol. 10, 2022.
[10] Y. Huang, C. Liu, Y. Song, and X. Yu, “Near-optimal hybrid precoding for millimeter wave massive MIMO systems via costefficient Sub-connected structure,” IET Commun., vol. 14, no. 14, 2020.
[11] P. Xia, R. W. Heath, and N. Gonzalez-Prelcic, “Robust Analog Precoding Designs for Millimeter Wave MIMO Transceivers with Frequency and Time Division Duplexing,” IEEE Trans. Commun., vol. 64, no. 11, 2016.
[12] X. Song, T. Kuhne, and G. Caire, “Fully-Connected vs. Sub-Connected Hybrid Precoding Architectures for mmWave MU-MIMO,” in IEEE International Conference on Communications, 2019, vol. 2019-May.
[13] W. Zheng, A. Koc, and T. Le-Ngoc, “Sub-Connected Hybrid Precoding Architectures in Massive MIMO Systems,” in 2020 IEEE Global Communications Conference, GLOBECOM 2020 - Proceedings, 2020, vol. 2020-January.
[14] Y. Liu, Q. Feng, Q. Wu, Y. Zhang, M. Jin, T. Qiu, Energy-efficient hybrid precoding with low complexity for mmWave massive MIMO systems, IEEE Access 7 (2019) 95021–95032.
[15] F. Liu, X. Bai, H. Shi, R. Du, and H. Liu, “Hybrid precoding with adaptive sub-connected architecture for mmWave Massive MIMO systems,” in IEEE International Symposium on Personal, Indoor and Mobile Radio Communications, PIMRC, 2020, vol. 2020-August.
[16] W. Ni and X. Dong, “Hybrid block diagonalization for massive multiuser MIMO systems,” IEEE Trans. Commun., vol. 64, no. 1, 2016.
[17] M. Alouzi, F. Chan, and C. D’Amours, “Low Complexity Hybrid Precoding and Combining for Millimeter Wave Systems,” IEEE Access, vol. 9, 2021.
[18] A. A. M. Saleh and R. A. Valenzuela, “A Statistical Model for Indoor Multipath Propagation,” IEEE J. Sel. Areas Commun., vol. 5, no. 2, 1987.
[19] A. Forenza, D. J. Love, and R. W. Heath, “Simplified spatial correlation models for clustered MIMO channels with different array configurations,” IEEE Trans. Veh. Technol., vol. 56, no. 4 II, 2007, doi: 10.1109/TVT.2007.897212.
[20] E. E. Bahingayi and K. Lee, “Low-Complexity Incremental Search-Aided Hybrid Precoding and Combining for Massive MIMO Systems,” IEEE Access, vol. 8, 2020.
[21] Z. Wang, M. Li, Q. Liu, and A. L. Swindlehurst, “Hybrid Precoder and Combiner Design with Low-Resolution Phase Shifters in mmWave MIMO Systems,” IEEE J. Sel. Top. Signal Process., vol. 12, no. 2, 2018.
[22] S. K. Sahoo and A. Makur, “Dictionary training for sparse representation as generalization of K-means clustering,” IEEE Signal Process. Lett., vol. 20, no. 6, 2013.
[23] R. Mendez-Rial, C. Rusu, N. Gonzalez-Prelcic, A. Alkhateeb, and R. W. Heath, “Hybrid MIMO Architectures for Millimeter Wave Communications: Phase Shifters or Switches?,” IEEE Access, vol. 4, 2016.
[24] M. Tian, J. Zhang, Y. Zhao, L. Yuan, J. Yang, and G. Gui, “Switch and Inverter Based Hybrid Precoding Algorithm for mmWave Massive MIMO System: Analysis on Sum-Rate and Energy-Efficiency,” IEEE Access, vol. 7, 2019.