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Original Articles

Open-Loop and Closed-Loop Transmit Diversity Techniques—Overview and New Results

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Pages 223-234 | Published online: 26 Mar 2015

REFERENCES

  • G J Foschini & M J Gans, On limits of wireless communications in a fading environment when using multiple antennas, in AT&T Bell Laboratories, Tech Memo, Sep 1995.
  • A Wittneben, Basestation modulation diversity for digital SIMULCAST, in Proc IEEE Int Conf Veh Tech, pp 848–853, May 1991.
  • N Seshadri & J H Winters, Two signaling schemes for improving the error performance of frequency-division-duplex (FDD) transmission systems using transmitter antenna diversity, in Proc IEEE Int Cont Veh Tech, pp 508–511, May 1993.
  • V Tarokh, N Seshadri & A R Calderbank, Space-time codes for high data rate wireless communication: Performance criterion and code construction, in IEEE Transactions on Information Theory, vol 44, pp 744–765, Mar 1998.
  • SM Alamouti, A simple transmit diversity technique for wireless communications, in IEEE Journal on Selected Areas in Communications, vol 16, pp 1451–1458, Oct 1998.
  • V Tarokh, H Jafarkhani & A R Calderbank, Space-time block codes from orthogonal designs, in IEEE Transactions on Information Theory, vol 45, pp 1456–1467, July 1999.
  • B Hassibi & B M Hochwald, High-rate codes that are linear in space and time, in IEEE Transactions on Information Theory, vol 48, pp 1804–1824, July 2002.
  • S Sandhu & A Paulraj, Space-time block codes: A capacity perspective, in IEEE Communications Letters, vol 4, pp 384–386, Dec 2000.
  • G Ganesan & P Stoica, Space-time block codes: A maximum SNR approach, in IEEE Transactions on Information Theory, vol 47, pp 1650–1656, May 2001.
  • O Tirkkonen & A Hottinen, Complex space-time block codes for four Tx antennas, in IEEE Global Telecommunications Conference, GLOBECOM'00, vol 2, pp 1005–1009, Nov 2000.
  • W Su & X G Xia, Two generalized complex orthogonal space-time block codes of rates 7/11 and 3/5 for 5 and 6 transmit antennas, in IEEE Transactions on Information Theory, vol 49, pp 313–316, Jan 2003.
  • H Jafarkhani, A quasi-orthogonal space-time block code, in IEEE Transactions on Communications, vol 49, pp 1–4, Jan 2001.
  • C B Papadias & G J Foschini, Capacity-approaching space-time codes for systems employing four transmitter antennas, in IEEE Transactions on Information Theory, vol 49, pp 726–733, March 2003.
  • A Narula, M J Lopez, M D Trott & G W Wornell, Efficient use of side information in multiple-antenna data transmission over fading channels, in IEEE Journal on Selected Areas in Communications, vol 16, pp 1423–1436, Oct 1998.
  • T K Y Lo, Maximum ratio transmission, in IEEE Transactions on Communications, vol 47, pp 1458–1461, Oct 1999.
  • I E Telatar, Capacity of multi-antenna Gaussian channels, in Eur Trans Telecom, vol 10, pp 585–595, Nov 1999.
  • A Paulraj, R Nabar & D Gore, Introduction to Space-time Wireless Communications, in Cambridge University Press, 2003.
  • L Zheng & D N C Tse, Diversity and multiplexing: A fundamental tradeoff in multiple antenna channels, in IEEE Transactions on Information Theory, vol 49, pp 1073–1096, May 2003.
  • H Lu & P V Kumar, Rate-diversity tradeoff of space-time codes with fixed alphabet and optimal constructions for PSK modulation, in IEEE Transactions on Information Theory, vol 49, pp 2747–2751, Oct 2003.
  • G J Foschini, Layered space-time architecture for wireless communication in a fading environment when using multielement antennas,” in Bell Labs Tech J, vol 1, pp 41–59, 1996.
  • J K Milleth, K Giridhar & D Jalihal, Performance enhancement of space-time trellis codes when encountering AWGN and Ricean channels, in IEEE Transactions on Vehicular Technology, accepted for publication.
  • J K Milleth, K Giridhar & D Jalihal, Distance-optimized space-time trellis codes, in IEEE International Conference on Personal Wireless Communications, ICPWC'02, New Delhi, India, pp 56–60, Dec 2002.
  • J K Milleth, K Giridhar & D Jalihal, Pre-processed space-time trellis codes with one-bit feedback, in IEEE Communications letters, accepted for publication.
  • D J Love & R W Heath, Jr, Equal gain transmission in multiple-input multiple-output wireless systems, in IEEE Transactions on Communications, vol 51, pp 1102–1110, July 2003.
  • C Toker, S Lambotharan & J A Chambers, Space-time block coding for four transmit antennas with closed loop feedback over frequency selective fading channels, in Proc IEEE Information Theory Workshop, pp 195–198, Mar-Apr 2003.
  • J Akhtar & D Gesbert, Partial feedback based orthogonal block coding, in Proc IEEE hit Conf Veh Tech, pp 287–291. Apr 2003.
  • J K Milleth, K Giridhar & D Jalihal, Low complexity transmit diversity scheme with phase-only feedback, in Proceedings of 2003 Wireless World Research Forum, WWRF# 10 Meeting, New York. USA. Oct 2003.
  • J K Milleth, K Giridhar & D Jalihal, On channel orthogonalization using space-time block coding with partial feedback, in IEEE Transactions on Communications, submitted for review.
  • J K Milleth, K Giridhar & D Jalihal, Closed loop Transmit Diversity Schemes for Five and Six Transmit Antennas, in IEEE Signal Processing Letters, vol 12. pp 130–133, Feb 2005.

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