DOUBLE-DWELL FREQUENCY SYNCHRONIZATION IN OFDM SIGNALS

Omar R. Al-Sammarraie and Mohamed G. El-Tarhuni

References

  1. [1] T. Hwang, C. Yang, G. Wu, S. Li, and G. Li, OFDM and its wireless applications: A survey, IEEE Transactions on Vehicular Technology, 58(4), 2009, 1673–1694.
  2. [2] L. Cimini, Jr., Analysis and simulation of a digital mobile channel using orthogonal frequency division multiplexing, IEEE Transactions on Communications, 33(7), 1985, 665–675.
  3. [3] J. Bingham, Multicarrier modulation for data transmission: An idea whose time has come, IEEE Communications Magazine, 28(5), 1990, 5–14.
  4. [4] R. Prasad, OFDM for wireless communication systems (Boston, MA: Artech House Inc., 2004).
  5. [5] Y. Li and G. St¨uber, Orthogonal frequency division multiplexing for wireless communications (Boston, MA: Springer-Verlag, 2006).
  6. [6] J. Andrews, A. Ghosh, and R. Muhamed, Fundamentals of WiMAX: Understanding broadband wireless networking (Massachusetts: Pearson Inc., 2003).
  7. [7] H. Steendam and M. Moeneclaey, Analysis and optimization of the performance of OFDM on frequency-selective time-selective fading channels, IEEE Transactions on Communications, 47(12), 1999, 1811–1819.
  8. [8] Y. Mostofi and D. Cox, Mathematical analysis of the impact of timing synchronization errors on the performance of an OFDM system, IEEE Transactions on Communications, 54(2), 2006, 226–230.
  9. [9] P. Moose, A technique for orthogonal frequency division multiplexing frequency offset correction, IEEE Transactions on Communications, 42(10), 1994, 2908–2914.
  10. [10] J. Zhu and W. Lee, Carrier frequency offset estimation for OFDM systems with null subcarriers, IEEE Transactions on Vehicular Technology, 55(5), 2006, 1677–1690.
  11. [11] N. Lashkarian and S. Kiaei, Class of cyclic-based estimators for frequency-offset estimation of OFDM systems, IEEE Transactions on Communications, 48(12), 2000, 2139–2149.
  12. [12] W. Jeon, K. Chang, and Y. Cho, An equalization technique for orthogonal frequency-division multiplexing systems in time-variant multipath channels, IEEE Transactions on Communications, 47(1), 1999, 27–32.
  13. [13] T. Schmidl and D. Cox, Robust frequency and timing synchronization for OFDM, IEEE Transactions on Communications, 45(12), 1997, 1613–1621.
  14. [14] M. Morelli and U. Mengali, An improved frequency offset estimator for OFDM applications, IEEE Communications Letters, 3(3), 1999, 75–77.
  15. [15] Y. Li, H. Minn, N. Al-Dhahir, and A.R. Calderbank, Pilot designs for consistent frequency-offset estimation in OFDM systems, IEEE Transactions on Communications, 55(5), 2007, 864–877.
  16. [16] Y. Li and H. Minn, Robust and consistent pilot designs for frequency offset estimation in MIMO OFDM systems, IEEE Transactions on Communications, 56(10), 2008, 1737–1747.
  17. [17] W. Kuo and M. Fitz, Frequency offset compensation of pilot symbol assisted modulation in frequency flat fading, IEEE Transactions on Communications, 45(11), 1997, 1412–1416.
  18. [18] J. Zheng and W. Zhu, An algorithm for calibration of TDS-OFDM carrier frequency offset, IEEE Transactions on Consumer Electronics, 55(2), 2009, 366–370.
  19. [19] O. Besson and P. Stoica, On frequency offset estimation for flat-fading channels, IEEE Communications Letters, 5(10), 2001, 402–404.
  20. [20] B. Chen, Maximum likelihood estimation of OFDM carrier frequency offset, IEEE Signal Processing Letters, 9(4), 2002, 123–126.
  21. [21] M. Morelli and U. Mengali, Carrier-frequency estimation for transmission over selective channels, IEEE Transactions on Communications, 48(9), 2000, 1580–1589.
  22. [22] J. Chen, M. Li, and Y. Kuo, Adaptive OFDM synchronization algorithm in frequency selective fading channels, IEEE Transactions on Consumer Electronics, 55(4), 2008, 1841–1846.
  23. [23] W. Chin, ML estimation of timing and frequency offsets using distinctive correlation characteristics of OFDM signal over dispersive fading channels, IEEE Transactions on Vehicular Technology, 60(2), 2011, 444–456.

Important Links:

Go Back