×

Spectral efficiency analysis of massive MIMO systems. (English) Zbl 1504.94067

Singh, Brahmjit (ed.) et al., Intelligent computing and communication systems. Singapore: Springer. Algorithms Intell. Syst., 3-13 (2021).
Summary: In cellular systems, massive MIMO is the rising innovation to achieve large data rate communication. It utilizes enormous number of transmitter antennas at the base station and can bring about ten to twenty times enhancement in area throughput. Spectral efficiency is one of the important performance measures that needs to be considered while enhancing throughput in massive MIMO systems. In this paper, we study uplink spectral efficiency of massive MIMO systems employing different values of system parameters and linear receiving techniques. The impact of pilot reuse factor, number of users and coherence block length is also investigated. The presented simulation results can be used to estimate the spectral efficiency of massive MIMO systems employing different values of system parameters and receiving techniques for 5G wireless.
For the entire collection see [Zbl 1492.94013].

MSC:

94A12 Signal theory (characterization, reconstruction, filtering, etc.)
78A50 Antennas, waveguides in optics and electromagnetic theory
Full Text: DOI

References:

[1] Andrews JG, Buzzi S, Choi W, Hanly SV, Lozano A, Soong ACK, Zhang JC (2014) What will 5 g be? IEEE J Sel Areas Commun 32(6):1065-1082 · doi:10.1109/JSAC.2014.2328098
[2] Nokia Siemens Networks. 2020: beyond 4G radio evolution for the Gigabit experience. White Paper, Technical Report, 201
[3] Marzetta TL (2010) Noncooperative cellular wireless with unlimited numbers of base station antennas. IEEE Trans Wirel Commun 9(11):3590-3600 · doi:10.1109/TWC.2010.092810.091092
[4] Baldemair R, Dahlman E, Fodor G, Mildh G, Parkvall S, Selen Y, Tullberg H, Balachandran K (2013) Evolving wireless communications: addressing the challenges and expectations of the future. IEEE Veh Technol Mag 8(1):24-30
[5] Boccardi F, Heath R, Lozano A, Marzetta T, Popovski P (2014) Five disruptive technology directions for 5G. IEEE Commun Mag 52(2):74-80 · doi:10.1109/MCOM.2014.6736746
[6] Larsson EG, Tufvesson F, Edfors O, Marzetta TL (2014) Massive MIMO for next generation wireless systems. IEEE Commun Mag 52(2):186-195 · doi:10.1109/MCOM.2014.6736761
[7] Hoydis J, ten Brink S, Debbah M (2013) Massive MIMO in the UL/DL of cellular networks: how many antennas do we need? IEEE J Sel Areas Commun 31(2):160-171 · doi:10.1109/JSAC.2013.130205
[8] Ngo HQ, Larsson EG, Marzetta TL (2013) Energy and spectral efficiency of very large multiuser MIMO systems. IEEE Trans Commun 61(4):1436-1449 · doi:10.1109/TCOMM.2013.020413.110848
[9] Ha D, Lee K, Kang J (2013) Energy efficiency analysis with circuit power consumption in massive MIMO systems. In: Proceedings of IEEE international symposium personal, indoor and mobile radio communications
[10] Bjornson E, Sanguinetti L, Hoydis J, Debbah M (2015) Optimal design of energy-efficient multi-user MIMO systems: is massive MIMO the answer. IEEE Trans Wirel Commun 14(6):3059-3075 · doi:10.1109/TWC.2015.2400437
[11] Yang H, Marzetta T (2013) Total energy efficiency of cellular large scale antenna system multiple access mobile networks. In: Proceedings of IEEE online conference on green communications
[12] Huh H, Caire G, Papadopoulos H, Ramprashad S (2012) Achieving “massive MIMO” spectral efficiency with a not-so-large number of antennas. IEEE Trans Wirel Commun 11(9):3226-3239 · doi:10.1109/TWC.2012.070912.111383
[13] Li M, Nam Y-H, Ng B, Zhang J (2012) A non-asymptotic throughput for massive MIMO cellular uplink with pilot reuse. In: Proceedings of IEEE global communications conference (GLOBECOM)
[14] Müller R, Vehkaperä M, Cottatellucci L (2013) Blind pilot decontamination. In: Proceedings of WSA
[15] Björnson E, Hoydis J, Sanguinetti L (2017) Massive MIMO networks: spectral, energy, and hardware efficiency. In: Foundations and \(trends^®\) in signal processing, vol. 11(3-4), pp 154-655. https://doi.org/10.1561/2000000093
[16] Cox D (1982) Cochannel interference considerations in frequency reuse small-coverage-area radio systems. IEEE Trans Commun 30(1):135-142 · doi:10.1109/TCOM.1982.1095385
[17] ITU: Requirements related to technical performance for IMT-advanced radio interface(s). Technical report, ITU-R M.2134
[18] Jose FK, Lolis LH, Mafra SB, Ribeiro EP (2018) Spectral efficiency analysis in massive MIMO using FBMC-OQAM modulation. J Microwaves Optoelectron Electro Magn Appl 604-618. https://doi.org/10.1590/2179-10742018v17i41544
This reference list is based on information provided by the publisher or from digital mathematics libraries. Its items are heuristically matched to zbMATH identifiers and may contain data conversion errors. In some cases that data have been complemented/enhanced by data from zbMATH Open. This attempts to reflect the references listed in the original paper as accurately as possible without claiming completeness or a perfect matching.