Spatial Multidimensional Cooperative Transmission Theories And Key Technologies. Lin Bai

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Spatial Multidimensional Cooperative Transmission Theories And Key Technologies - Lin Bai


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      1.Shannon CE. A Mathematical Theory of Communication. Bell System Technical Journal, 1948, 27(3): 379–423.

      2.Janaswamy R. Radio Wave Propagation and Smart Antenna for Wireless Communications. Boston, MA: Kluwer Academic Publishers, 2000.

      3.Simon MK and Alouini MS. Digital Communications over Fading Channels: A Unified Approach to Performance Analysis. New York: Wiley, 2000.

      4.Proakis JG. Digital Communications. 4th edn. New York: McGraw-Hill, 2001.

      5.Paulraj AJ, Nabar R and Gore D. Introduction to Space–Time Wireless Communications. Cambridge, UK: Cambridge University Press, 2003.

      6.Gore DA, Sandhu S and Paulraj A. Delay diversity codes for frequency selective channels. IEEE International Conference on Communications. New York, 2002, 3: 1949–1953.

      7.Godara LC. Applications of antenna arrays to mobile communications, Part II: Beamforming and direction-of-arrival considerations. IEEE Proceedings, 1997, 85(8): 1195–1245.

      8.Foschini GJ and Gans MJ. On limits of wireless communications in a fading environment using multiple antennas. Wireless Personal Communications, 1998, 6(3): 311–335.

      9.Telatar IE and Telatar IE. Capacity of multi-antenna Gaussian channels. European Transactions on Telecommunications, 1999, 10: 585–595.

      10.Foschini GJ. Layered space–time architecture for wireless communications in a fading environment when using multiple-element antenna. Bell Labs Technical Journal, 1996, 1(2): 41–59.

      11.Foschini GJ, Chizhik D, Gans MJ, et al. Analysis and performance of some basic space-time architectures. IEEE Journal on Selected Areas Communication, 2003, 21(3): 303–320.

      12.Edelaman A. Eigenvalues and condition numbers of random matrices. Ph.D. dissertation, 2010. http://dspace.mit.edu/bitstream/1721.1/14322/2/21864285-MIT.pdf.

      13.Zhang X and Kung SY. Capacity analysis for parallel and sequential MIMO equalizers. IEEE International Conference on Acoustic, Speech, and Signal Processing. 2003, 4: IV-357–360.

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      aReprinted/adapted by permission from Springer Nature Customer Service Centre GmbH: Springer “Low Complexity MIMO Receivers” by Bai L, Choi J and Yu Q, 2014.

      b Reprinted/adapted by permission from Springer Nature Customer Service Centre GmbH: Springer “Low Complexity MIMO Detection” by Bai L and Choi J, 2012.

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