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Adaptive Transmit Diversity with Quadrant Phase Constraining Feedback

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Abstract

An adaptive transmit diversity scheme with quadrant phase constraining feedback is proposed in this paper. With simple linear operations at both transmitter and receiver, the proposed algorithm can achieve better system performances with only 2M−2 bits of feedback information for systems with M transmit antennas. Theoretical performance bounds of the proposed transmit diversity scheme are derived. Simulation examples and theoretical analyses show that the proposed transmit diversity scheme outperforms not only the conventional open-loop transmit diversity techniques, but also some closed-loop transmit diversity techniques with more information transmitted in the feedback channel.

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References

  1. 3GPP: 3GPP TR25.848 v4.0.0, “3GPP technical report: Physical Layer Aspects of Utra High Speed Downlink Packet Access”, March 2001. (available at http://www.3gpp.org).

  2. ETSI. GSM 05.05, “Radio Transmission and Reception”, ETSI EN 300 910 V8.5.1, Nov. 2000.

  3. S.M. Alamouti, “A simple Transmit Diversity Technique for Wireless Communications”, IEEE J. Select. Area Commun., Vol. 16, pp. 1451–1458, Oct. 1998.

    Article  Google Scholar 

  4. V. Tarokh, N. Seshadri, and A.R. Calderbank, “Space-time Codes for High Data Rate Wireless Communication: Performance Criterion and Code Construction”, IEEE Trans. Info. Theory, Vol. 44, pp. 744–765, March 1998.

    Article  MATH  MathSciNet  Google Scholar 

  5. V. Tarokh, H. Jafarkhani, and A.R. Calderbank, “Space-time Block Codes from Orthogonal Designs”, IEEE Trans. Info. Theory, Vol. 45, pp. 1456–1467, July 1999.

    Article  MATH  MathSciNet  Google Scholar 

  6. Y. Xin, Z. Wang, and G.B. Giannakis, “Space-time Diversity Systems Based on Linear Constellation Precoding”, IEEE Trans. Wireless Commun., Vol. 2, pp. 294–309, March 2003.

    Article  Google Scholar 

  7. G. Jongren, M. Skoglund, and B. Ottersten, “Combining Beamforming and Orthogonal Space-time Block Coding”, IEEE Trans. Info. Theory, Vol. 48, pp. 611–627, March 2002.

    Article  Google Scholar 

  8. S. Zhou and G.B. Giannakis, “Optimal Transmitter Eigen-beamforming and Space-time Block Coding Based on Channel Mean Feedback”, IEEE Trans. Signal Processing, Vol. 50, pp. 2599–2613, Oct. 2002.

    Article  Google Scholar 

  9. K. Rohani, M. Harrison, and K. Kuchi, “A Comparison of Base Station Transmit Diversity Methods for Third Generation Cellular Standards”, in Proc. IEEE Veh. Techno. Conf. VTC'99 Spring, pp. 351–355, May 1999.

  10. R.T. Derryberry, S.D. Gray, D.M. Ionescu, G. Mandyan, and B. Raghothaman, “Transmit Diversity in 3G CDMA Systems”, IEEE Commun. Mag., Vol. 40, pp. 68–75, April 2002.

    Article  Google Scholar 

  11. T. Lo, “Maximum Ratio Transmission”, IEEE Trans. Commun., Vol. 47, pp. 1458–1461, Oct. 1999.

    Article  Google Scholar 

  12. Huawei: TSGR1-02-0711 “STTD with Adaptive Transmitted Power Allocation”, May 2002. (available at http://www.3gpp.org)

  13. J.H. Horng, L. Li, and J. Zhang, “Adaptive Space-time Transmit Diversity for MIMO Systems”, in Proc. IEEE Veh. Techno. Conf. VTC'03 Spring, pp. 1070–1073, April 2003.

  14. R.W. Heath Jr., and A. Paulraj, “A Simple Scheme for Transmit Diversity Using Partial Channel Feedback”, in Proc. IEEE 32nd Asilomar Conf. Signals, Systems and Computers., pp. 1073–1078, 1998.

  15. T. Lo, “Adaptive Space-time Transmission with Side Information”, IEEE Trans. Wireless Commun., Vol. 3, pp. 1496–1501, Sep. 2004.

    Article  Google Scholar 

  16. M.K. Simon and M.-S. Alouini, “A Unified Approach to the Performance Analysis of Digital Communication Over Generalized Fading Channels”, Proc. of IEEE, Vol. 86, pp. 1860–1877, Sep. 1998.

    Article  Google Scholar 

  17. A. Annamalai, C. Tellambura, and V.K. Bhargava, “Equal-gain diversity receiver performance in wireless channels”, IEEE Trans. Commun., Vol. 48, pp. 1732–1745, Oct. 2000.

    Article  Google Scholar 

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Correspondence to Chengshan Xiao.

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Wu, J., Horng, H., Zhang, J. et al. Adaptive Transmit Diversity with Quadrant Phase Constraining Feedback. Wireless Pers Commun 38, 443–454 (2006). https://doi.org/10.1007/s11277-006-9054-5

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