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Increasing Code Rate of the Cooperative Relaying with Virtual OSTBC

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Abstract

In this paper we propose new schemes for increasing code rate of the cooperative relaying with virtual orthogonal space time block coding (OSTBC). The proposed schemes are used for creating virtual 4 × 1 multiple input–single output channel, and include one base station (BS) with two antennas, two relay stations (RS) each with a single antenna and one mobile station with a single antenna. One of the main disadvantages of the virtual OSTBC is its 1/2 code rate, so we propose new schemes with code rates 1, 4/5, 2/3 and 4/7 on the first hop, while the code rate on the second hop remains 1/ 2. The simulation results show that the proposed schemes maintain BER performance very close to the scheme with virtual OSTBC, e.g. in the case of BER value of 10−4 and Ricean channel parameter between BS and RSs of 10 dB the difference in the required signal to noise ratio between the proposed scheme with the greatest code rate and the virtual OSTBC is 0.25 dB, while for the proposed scheme with 4/7 code rate on the first hope this difference is only 0.05 dB.

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References

  1. Urosevic, U., Veljovic, Z., & Pejanovic-Djurisic, M. (2013). MIMO solution for performance improvements of OFDM–CDMA system with pilot tone. Wireless Networks, 19(8), 2021–2028.

    Article  Google Scholar 

  2. Paulraj, A. J., Nabar, R. U., & Bolcskei, H. (2004). An overview of MIMO communications—A key to gigabit wireless. Proceedings of the IEEE, 92(2), 198–218.

    Article  Google Scholar 

  3. Boccardi, F., Clerckx, B., Ghosh, A., Hardouin, E., Jöngren, G., Kusume, K., et al. (2012). Multiple-antenna techniques in LTE-advanced. IEEE Communications Magazine, 50(3), 114–121.

    Article  Google Scholar 

  4. Woong, C. (2011). Performance of amplify-and-forward cooperative networks with differential unitary space time coding. Wireless Networks, 17(3), 621–627.

    Article  Google Scholar 

  5. Islam, M. R., & Kim, J. (2010). On the cooperative MIMO communication for energy-efficient cluster-to-cluster transmission at wireless sensor network. Annals of Telecommunications-Annales des Télécommunications, 49(5–6), 325–340.

    Article  Google Scholar 

  6. He, C., Sheng, B., Zhu, P., Wang, D., & You, X. (2012). Energy efficiency comparison between distributed and co-located MIMO systems. International Journal of Communication Systems,. doi:10.1002/dac.2345.

    Google Scholar 

  7. Wang, D., Wang, J., You, X., Wang, Y., Chen, M., & Hou, X. (2013). Spectral efficiency of distributed MIMO systems. IEEE Journal on Selected Areas in Communications, 31(10), 2112–2127.

    Article  Google Scholar 

  8. Truong, K. T., Sartori, P., & Heath, R. W. (2013). Cooperative algorithms for MIMO amplify-and-forward relay networks. IEEE Transactions on Signal Processing, 61(5), 1272–1287.

    Article  MathSciNet  Google Scholar 

  9. Nam, Y., Liu, L., & Zhang, J. (2012). Cooperative communications for LTE-advanced—Relay and CoMP. International Journal of Communication Systems,. doi:10.1002/dac.2423.

    Google Scholar 

  10. Yamaoka, T., Hara, Y., Fukui, N., Kuboand, H., & Yamazato, T. (2012). A simple cooperative relaying with Alamouti Coded Transmission. IEICE Transactions on Communications, E95–B(2), 643–646.

    Article  Google Scholar 

  11. Kühn, V. (2006). Wireless communications over MIMO channels—Applications to CDMA and multiple antenna systems (pp. 283–288). New York: Wiley.

    Book  Google Scholar 

  12. Tarokh, V., Jafarkhani, H., & Calderbank, A. R. (1999). Space–Time block codes from orthogonal designs. IEEE Transactions on Information Theory, 45(5), 1456–1467.

    Article  MATH  MathSciNet  Google Scholar 

  13. Suraweera, H. A., Karagiannidis, G. K., & Smith, P. J. (2009). Performance of the dual-hop asymmetric fading channel. IEEE Transactions on Wireless Communications, 8(6), 2783–2788.

    Article  Google Scholar 

Download references

Acknowledgments

The results presented in this paper are part of the “Improving the concept of MIMO communications in cellular networks of the next generations” research project, funded by Montenegrin Ministry of Science. Also, work is funded by European Union project Fore-Mont as a part of Seventh Framework Programme (Grant Agreement No. 315970 FP7-REGPOT-CT-2013) http://www.foremont.ac.me.

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Correspondence to Ugljesa Urosevic.

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Veljovic, Z., Urosevic, U. Increasing Code Rate of the Cooperative Relaying with Virtual OSTBC. Wireless Pers Commun 83, 399–410 (2015). https://doi.org/10.1007/s11277-015-2399-x

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