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Preamble-based improved channel estimation for multiband UWB system in presence of interferences

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Abstract

Interferences reduce the performance of a correct data signal detection and decoding. This problem becomes severe when interferences exist during the period of channel estimation. This will destroy the accuracy of channel estimation and will eventually result severe degradation in the performance of signal detection and decoding in the entire data packet/frame. In this article, we propose an improved channel estimation technique for multiband orthogonal frequency division multiplexing (MB-OFDM) ultra-wideband (UWB) system in presence of interferences. In particular, we work towards a preamble-based channel estimation technique in multi-access and narrowband interfering environments. We construct two preamble symbols with opposite, both in amplitude and phase, sequences in frequency-domain. Time-domain redundancy (TR) is introduced into these preamble symbols before transmission. Based on this time-domain redundancy property, we eliminate multi-access interference (MAI) through an adaptive select and replace (ASR) scheme. We show that the use of opposite sequences in preambles leads a simple addition, subtraction and compare (ASC) scheme to cancel narrowband interference (NBI). In addition, we apply a frequency-domain filter, driven by channel’s power delay profile (PDP), to get a further enhancement in the estimation accuracy. Simulation results urge that our proposed technique outperforms the conventional channel estimation methods.

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References

  1. ECMA (2008). Standard ECMA-368: high rate ultra wideband PHY and MAC standard (2nd edn.). ECMA International, December.

  2. Barta, A., Balakrishnan, J., Aliello, G., Foerster, J., & Dabak, A. (2004). Design of a multiband OFDM system for realistic UWB Channel environments. IEEE Transactions on Microwave Theory and Techniques, 52(9), 2123–2138.

    Article  Google Scholar 

  3. Chen, Y., Zhang, J., & Jayalath, A. D. S. (2006). Multiband-OFDM UWB vs. IEEE802.11n: system level design considerations. In Vehicular technology conference, Melbourne, Australia, May.

    Google Scholar 

  4. IEEE (2004). Multiband OFDM physical layer proposal for 802.15.3a. IEEE Standard, March.

  5. Li, Y., Minn, H., & Rajatheva, R. M. A. P. (2008). Synchronization, channel estimation and equalization in MB-OFDM systems. IEEE Transactions on Wireless Communications, 7(11), 4341–4352.

    Article  Google Scholar 

  6. Fan, X., Leng, B., Zhang, Z., & Bi, G. (2005). An improved channel estimation algorithm for OFDM UWB. In Proceedings of IEEE WCNC: Vol. 1. September.

    Google Scholar 

  7. Png, K.-B., Peng, X., & Chin, F. (2008). A low complexity adaptive channel estimation scheme for MB-OFDM system. In IEEE international conference on ultra-wideband (ICUWB), Germany.

    Google Scholar 

  8. Shin, S., Yang, Q., & Kwak, K. S. (2007). Performance analysis of MB-OFDM system using SVD aimed LMMSE channel estimation. In IEEE international conference on ultra-wideband (ICUWB), Singapore, September.

    Google Scholar 

  9. Li, Y., Molisch, A. F., & Zhang, J. (2004). Practical approaches to channel estimation and interference suppression for OFDM based UWB communications. In IEEE 6th CAS symposium on emerging technologies: mobile and wireless communications, Shanghai, China.

    Google Scholar 

  10. Tsai, Y. R., Wang, C.-C., & Li, X.-S. (2008). Adaptive channel estimation for MB-OFDM systems in multi-access interfering environments. In IEEE vehicular technology conference (VTC), Singapore, May.

    Google Scholar 

  11. Hadaschik, N., Zakia, I., Ascheid, G., & Meyr, H. (2007). Joint narrowband interference detection and channel estimation for wideband OFDM. In Proceedings of the European wireless conference, April.

    Google Scholar 

  12. Nee, R. V., & Prasad, R. (2000). OFDM for wireless multimedia communications. Boston, London: Artech House.

    Google Scholar 

  13. Molisch, A., Foerster, J., & Pendergrass, M. (2003). Channel models for ultra-wideband personal area networks. IEEE Wireless Communications Magazine, 14–21.

  14. Batra, A., & Zeidler, J. R. (2008). Narrowband interference mitigation in OFDM systems. In Military communications conference, San Diego.

    Google Scholar 

  15. Scharf, L. L. (1991). Statistical signal processing: detection, estimation and time series analysis. Reading: Addison-Wesley.

    Google Scholar 

  16. Noh, M., Lee, Y., & Park, H. (2006). Low complexity LMMSE channel estimation for OFDM. IEE Proceedings Communications, 153(5), 645–650.

    Article  Google Scholar 

  17. Riazul Islam, S. M., & Kwak, K. S. (2010). A comprehensive study of channel estimation for WBAN-based healthcare systems: feasibility of using multiband UWB. Journal of Medical Systems. doi:10.1007/s10916-010-9617-6.

  18. Middleton, D. (1999). Non-Gaussian noise models in signal processing for telecommunications: new methods and results for class A and class B noise models. IEEE Transactions on Information Theory, 45(4), 1129–1149.

    Article  Google Scholar 

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Correspondence to S. M. Riazul Islam.

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Islam, S.M.R., Kwak, K.S. Preamble-based improved channel estimation for multiband UWB system in presence of interferences. Telecommun Syst 52, 1–14 (2013). https://doi.org/10.1007/s11235-011-9440-5

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  • DOI: https://doi.org/10.1007/s11235-011-9440-5

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