[en] Massive multiple-input multiple-output (MIMO) is seen as a key enabler for next-generation wireless communication systems. Increased throughput afforded by massive MIMO, however, may severely degrade when the number of users served by a single base station increases, calling for user scheduling algorithms. To deal with this problem, a new user selection algorithm, called inter-channel interference-based selection (ICIBS), is proposed. ICIBS drops those users that induce the highest interference to the remaining users. Simulations show that selecting users with ICIBS significantly improves the throughput, outperforming state-of-the-art user selection algorithms.
Disciplines :
Ingénierie électrique & électronique
Auteur, co-auteur :
Chaves, Rafael S.
Cetin, Ediz
Lima, Markus V. S.
ALVES MARTINS, Wallace ; University of Luxembourg > Interdisciplinary Centre for Security, Reliability and Trust (SNT) > SigCom
Co-auteurs externes :
yes
Langue du document :
Anglais
Titre :
User Selection based on Inter-channel Interference for Massive MIMO under Line-of-sight Propagation
Date de publication/diffusion :
2021
Nom de la manifestation :
General Assembly and Scientific Symposium of the International Union of Radio Science (URSI GASS)
T. L. Marzetta, "Noncooperative Cellular Wireless with Unlimited Numbers of Base Station Antennas, " IEEE Transactions on Wireless Communications, 9, 11, November 2010, pp. 3590-3600, doi: 10. 1109/TWC. 2010. 092810. 091092.
B. M. Hochwald, T. L. Marzetta, and V. Tarokh, "Multiple-Antenna Channel Hardening and Its Implications for Rate Feedback and Scheduling, " IEEE Transactions on Information Theory, 50, 9, September 2004, pp. 1893-1909, doi: 10. 1109/TIT. 2004. 833345.
F. Rusek, D. Person, B. K. Lau, E. G. Larsson, T. L. Marzetta, and F. Tufvesson, "Scaling Up MIMO: Opportunities and Challenges with Very Large Arrays, " IEEE Signal Processing Magazine, 30, 1, January 2013, pp. 40-60, doi: 10. 1109/MSP. 2011. 2178495.
H. Q. Ngo, E. G. Larsson, and T. L. Marzetta, "Aspects of Favorable Propagation in Massive MIMO, " 22nd European Signal Processing Conference, Lisbon, September 2014, pp. 76-80.
T. Yoo and A. Goldsmith, "On the Optimality of Multiantenna Broadcast Scheduling Using Zero-Forcing Beamforming, " IEEE Journal on Selected Areas in Communications, 24, 3, March 2006, pp. 528-541, doi: 10. 1109/JSAC. 2005. 862421.
G. Dimíc and N. D. Sidiropoulos, "On Downlink Beamforming with Greedy User Selection: Performance Analysis and a Simple New Algorithm, " IEEE Transactions on Signal Processing, 53, 10, October 2005, pp. 3857-3868, doi: 10. 1109/TSP. 2005. 855401.
J. Jiang, R. M. Buehrer, and W. H. Tranter, "Greedy Scheduling Performance for a Zero-Forcing Dirty-Paper Coded System, " IEEE Transactions on Communications, 54, 5, May 2006, pp. 789-793, doi: 10. 1109/TCOMM. 2006. 874008.
H. Liu, H. Gao, S. Yang, and T. Lv, "Low-Complexity Downlink User Selection for Massive MIMO Systems, " IEEE Systems Journal, 11, 2, June 2017, pp. 1072-1083, doi: 10. 1109/JSYST. 2015. 2422475.
H. Yang and T. L. Marzetta, "Massive MIMO with Max-Min Power Control in Line-of-Sight Propagation Environment, " IEEE Transactions on Communications, 65, 11, November 2017, pp. 4685-4693, doi: 10. 1109/TCOMM. 2017. 2725262.
F. Trèves, Topological Vector Spaces, Distributions and Kernels, 1st ed. San Diego: Academic Press, 1967.