An effective method for increasing the efficiency of the netwok in the MIMO systems

Author

Department of Electrical and Computer engineering, Ferdowsi University, Mashhad, Iran

Abstract

In this paper, a downlink system with cellular characteristics and two-way frequency division is considered which each user sends the information of status of information chanel to the home station. Since the collaboration between all the stations practically is not possible, a number of stations are classified into the clusters. Users should estimate their channel by sending pilots to the center station, and sending feedback of channel information. On the other hand, the station refuses to send the information, until it recives all information of users. This action leads to delation in transmission of information in downlink. In this research, four methods for reducing the information feedback of channel status in downlink system are proposed. The main idea of the proposed methods including the division the users into two groups based on the power of user channels and user distances from the transmitter station.  The key issue in CoMP is that channel status information should be collected in a small fraction of the channel's binding time, so that it has enough time to send information. Using simulation, it is observed that the effect of the proposed methods to reduce the feedback of channel status information on system performance is very low compared to other methods.

Keywords


   [1]      D. Gesbert, H. Huang, S. Shamai Shitz, O. Simeone, and W. Yu‎, ‎``Multi-cell MIMO cooperative networks: A new look at interference,'' ‎\textit{EEE J. Select. Areas Commun.}‎, vol. 28, no.9, pp. 2393-2409, Dec. 2010.‎
   [2]      D. J. Love, R. W. H. Jr., and T. Strohmer‎, ‎``Grassmannian beamforming for multiple-input multiple-output wireless systems,'' ‎\textit{EEE Trans. Inform. Theory}‎, vol. 49, pp. 2735-2747, Oct. 2003.
   [3]      K. Huang, R. W. Heath, and J. G. Andrews‎, ‎``Joint beamforming and scheduling for SDMA systems with limited feedback,'' \textit{IEEE Trans
   [4]      ‎D. ‎Kin‎, ‎Oh‎. ‎S‎. ‎Shin‎, ‎and K‎. ‎B‎. ‎Lee‎, ‎``Efficient limited feedback schemes for network MIMO systems,'' in \textit{Proc‎. 2011, ‎IEEE Globecom}‎‎, ‎pp‎. ‎1-6‎.
   [5]      S. Shamai , O. Simeone, O. Somekh, O. Poor, “ Joint multi-cell processing for downlink channels with limited-capacity backhaul,” in Proc. Information theory and application workshop, pp. 345 – 349, Jun. 2008
   [6]      Papadogiannis, H. J. Bang, D. Gesbert and E. Hardouin, "Efficient selective feedback design for multicell cooperative network," IEEE Tarns. Vechular Technology, vol. 60, no. 1, pp 196 – 205, Jan. 2011.
   [7]      J‎. ‎Xu‎, ‎J‎. ‎G‎. ‎Andrews‎, ‎and S‎. ‎A‎. ‎Jafar‎, ‎``MISO broadcast channels with delayed finite-rate feedback‎: ‎predict or observe?,'' \textit{IEEE Trans‎. ‎Wireless‎. ‎Commun.}‎, ‎vol‎. ‎11‎, ‎no‎. ‎4 pp‎. ‎1456-1467‎, ‎Apr‎. ‎2012‎.‎
   [8]      S‎. ‎Akoum‎, ‎and R‎. ‎W‎. ‎Heath Jr‎, ‎``Limited feedback for temporally correlated MIMO channels with other cell interference,'' \textit{IEEE Trans‎. ‎Signal Process.}‎, ‎vol‎. ‎58‎, ‎no‎. ‎10‎, ‎pp‎. ‎5219-5232‎, ‎Oct‎. ‎2010‎.
   [9]      W. Li and M. Latva-aho, “ An efficient channel block diagonalization method for generalized zero forcing assisted MIMO broadcasting system,'' ‎\textit{IEEE Trans. On Wireless Commun.}‎, vol. 10, no. 3, March 2011.
[10]      M. Kobayashi, M. Debbah, and J. C. Belfiore, “Outage efficient strategies for network MIMO with partial CSIT,” in Proc. IEEE Int. Symp. Infor. Theory, (ISIT’09), Seoul, Korea, June-July 2009
[11]      S. Shamai , O. Simeone, O. Somekh, O. Poor‎, ‎``Joint multi-cell processing for downlink channels with limited-capacity backhaul,'' in ‎\textit{Proc. 2008, Information theory and application workshop}‎, pp. 345-349.‎
[12]      D. Gesbert, S. Hanly, H. Huang, S. Shamai Shitz, O. Simeone and Wei Yu‎, ‎``Multi cell MIMO cooperative networks: a new look at interference,'' ‎\textit{IEEE J‎. ‎Sel‎. ‎Areas Commun.}‎, vol. 28, no.9, pp. 1380-1408, Dec. 2010.
[13]      M‎. ‎Karakayali‎, ‎G‎. ‎Foschini‎, ‎and R‎. ‎Valenzuela‎, ‎``Network coordination for‎ ‎spectrally efficient communications in cellular systems,'' {\it IEEE Wireless‎. ‎Commun‎. ‎Magazine}‎, ‎vol‎. ‎13‎, ‎no‎. ‎4‎, ‎pp‎. ‎56-61‎, ‎Aug‎. ‎2006‎.
[14]      Downlink Multiple Antenna Schemes for LTE-Advanced,'' Motorola, 3GPP TSG RAN WG1 R1-083229, Aug. 2008.
[15]      U. Jang, H. Son, J. Park and S. Lee, ‎``CoMP-CSB for ICI nulling with user selection,'' ‎\textit{IEEE Trans, Wire. Commun}‎., vol. 10, no. 9, pp. 2982-2993, Sept. 2011. ‎
[16]      B. Li, Y. Luo, R. wang, and H. shen, "A unified interference suppression framework: Joint vector and lattice approach," in Proc. 21th IEEE Intl. Symp. On Personal, Indor and mobile Radio Comm. (PIMRC'10), Towards IMT-Advanced and Beyond Workshop Istanbul, Turkey, Sept. 2010.
[17]      M‎. ‎Sharif and B‎. ‎Hassibi‎, ‎``On the capacity of MIMO broadcast channels with practical side information,'' \textit{IEEE Trans‎. ‎Inf‎. ‎Theory.}‎, ‎vol‎. ‎51‎, ‎pp‎. ‎506-522‎, ‎Feb‎. ‎2005‎.‎
[18]      S. G. Kiani and D. Gesbert, ‎``Optimal and distributed scheduling for multicell capacity maximization,'' ‎\textit{‎IEEE Trans. Wireless Commun.}‎, vol. 7, no. 1, pp. 288-297, Jan. 2008.
[19]      S. Kaviani and W. A. Krzymien, “ Optimal multiuser zero forcing with per-antenna power constraints for network MIMO coordination,’ EURASIP Journal on Wireless Communications and Networking, Volume 2011, Article ID 190461, 12 pages.
[20]      J‎. ‎Zhang‎, ‎``Adaptive MIMO Network to Manage Interference,'' University of Texas at Austin‎, ‎2009‎.
[21]      H‎. ‎Kim‎, ‎H‎. ‎Yu‎, ‎Y‎. ‎Sung‎, ‎and Y‎. ‎H‎. ‎Lee,‎, ‎``An efficient algorithm for zero-forcing coordinated beamformin,'' \textit{IEEE Commun‎. ‎Letters}‎, ‎vol‎. ‎16‎, ‎no‎. ‎7‎, ‎pp‎. ‎994-997‎, ‎July 2012‎.
[22]      E.Bigleiri,  R.Calderbank,  A. Constantinides,  A.Goldsmith, A.Paulraj, and H. Vincent Poor , “ MIMO wireless communication, “ Cambridge University Press, 2007
[23]      A. Gjendemsjoe, D. Gesbert, G. Oien, and S. Kiani, ‎``Binary power control for sum rate maximization over multiple interfering links,'' ‎\textit{IEEE Trans. Wireless Commun.}‎, vol. 7, no. 8, pp. 3164-3173, Aug. 2008.‎‎