[en] Base station cooperation can theoretically improve the throughput of multicell systems by coordinating interference and serving cell edge terminals through multiple base stations. In practice, the extent of cooperation is limited by the increase in backhaul signaling and computational demands. To address these concerns, we propose a novel distributed cooperation structure where each base station has responsibility for the interference towards a set of terminals, while only serving a subset of them with data. Weighted sum rate maximization is considered, and conditions for beamforming optimality and the optimal transmission structure are derived using Lagrange duality theory. This leads to distributed low-complexity transmission strategies, which are evaluated on measured multiantenna channels in a typical urban multicell environment.
Disciplines :
Sciences informatiques Sciences informatiques
Identifiants :
UNILU:UL-ARTICLE-2010-611
Auteur, co-auteur :
Björnson, Emil
Bengtsson, Mats
OTTERSTEN, Björn ; University of Luxembourg > Interdisciplinary Centre for Security, Reliability and Trust (SNT)
Langue du document :
Anglais
Titre :
Optimality Properties and Low-Complexity Solutions to Coordinated Multicell Transmission
Date de publication/diffusion :
2010
Nom de la manifestation :
Global Telecommunications Conference (GLOBECOM 2010), 2010 IEEE
Lieu de la manifestation :
Miami, FL, Etats-Unis
Date de la manifestation :
6-10 Dec. 2010
Manifestation à portée :
International
Titre de l'ouvrage principal :
Global Telecommunications Conference (GLOBECOM 2010), 2010 IEEE
D. Gesbert, M. Kountouris, R. Heath, C.-B. Chae, and T. Sälzer, "Shifting the MIMO paradigm," IEEE Signal Process. Mag., vol. 24, no. 5, pp. 36-46, 2007.
H. Zhang and H. Dai, "Cochannel interference mitigation and cooperative processing in downlink multicell multiuser MIMO networks," EURASIP J. Wirel. Commun. Netw., vol. 2, pp. 222-235, 2004.
M. Karakayali, G. Foschini, and R. Valenzuela, "Network coordination for spectrally efficient communications in cellular systems," IEEE Wireless Commun. Mag., vol. 13, no. 4, pp. 56-61, 2006.
H. Weingarten, Y. Steinberg, and S. Shamai, "The capacity region of the Gaussian multiple-input multiple-output broadcast channel," IEEE Trans. Inf. Theory, vol. 52, no. 9, pp. 3936-3964, 2006.
P. Marsch and G. Fettweis, "On multicell cooperative transmission in backhaul-constrained cellular systems," Ann. Telecommun., vol. 63, pp. 253-269, 2008.
O. Simeone, O. Somekh, H. V. Poor, and S. Shamai, "Downlink multicell processing with limited-backhaul capacity," EURASIP J. on Adv. in Signal Process., 2009.
E. Björnson and B. Ottersten, "On the principles of multicell precoding with centralized and distributed cooperation," in Proc. WCSP'09, 2009.
F. Rashid-Farrokhi, K. Liu, and L. Tassiulas, "Transmit beamforming and power control for cellular wireless systems," IEEE J. Sel. Areas Commun., vol. 16, no. 8, pp. 1437-1450, 1998.
W. Yu and T. Lan, "Transmitter optimization for the multi-antenna downlink with per-antenna power constraints," IEEE Trans. Signal Process., vol. 55, no. 6, pp. 2646-2660, 2007.
H. Dahrouj and W. Yu, "Coordinated beamforming for the multicell multi-antenna wireless system," IEEE Trans. Wireless Commun., vol. 9, no. 5, pp. 1748-1759, 2010.
A. Tölli, M. Codreanu, and M. Juntti, "Cooperative MIMO-OFDM cellular system with soft handover between distributed base station antennas," IEEE Trans. Wireless Commun., vol. 7, no. 4, pp. 1428-1440, 2008.
A. Tölli, H. Pennanen, P, and Komulainen, "On the value of coherent and coordinated multi-cell transmission," in Proc. IEEE ICC'09, 2009.
P. Marsch and G. Fettweis, "On downlink network MIMO under a constrained backhaul and imperfect channel knowledge," in Proc. IEEE GLOBECOM'09, 2009.
H. Zhang, N. Mehta, A. Molisch, J. Zhang, and H. Dai, "Asynchronous interference mitigation in cooperative base station systems," IEEE Trans. Wireless Commun., vol. 7, no. 1, pp. 155-165, 2008.
X. Shang, B. Chen, and H. V. Poor, "Multi-user MISO interference channels with single-user detection: Optimality of beamforming and the achievable rate region," IEEE Trans. Inf. Theory, arXiv:0907.0505v1, submitted for publication.
E. Björnson, R. Zakhour, D. Gesbert, and B. Ottersten, "Cooperative multicell precoding: Rate region characterization and distributed strategies with instantaneous and statistical CSI," IEEE Trans. Signal Process., vol. 58, no. 8, pp. 4298-4310, 2010.
E. Björnson, N. Jaldén, M. Bengtsson, and B. Ottersten, "Optimality properties, distributed strategies, and measurement-based evaluation of coordinated multicell OFDMA transmission," IEEE Trans. Signal Process., submitted for publication.
A. Wiesel, Y. Eldar, and S. Shamai, "Linear precoding via conic optimization for fixed MIMO receivers," IEEE Trans. Signal Process., vol. 54, no. 1, pp. 161-176, 2006.
M. Bengtsson, "From single link MIMO to multi-user MIMO," in Proc. IEEE ICASSP'04, 2004, pp. 697-700.
R. Zakhour and D. Gesbert, "Coordination on the MISO interference channel using the virtual SINR framework," in Proc. International ITG Workshop on Smart Antennas, 2009.
M. Kobayashi, M. Debbah, and J. Belfiore, "Outage efficient strategies in network MIMO with partial CSIT," in Proc. IEEE ISIT'09, 2009.
N. Jaldén, P. Zetterberg, B. Ottersten, and L. Garcia, "Inter- and intrasite correlations of large-scale parameters from macrocellular measurements at 1800 MHz," EURASIP J. Wirel. Commun. Netw., aug 2007.