| |
| |
|
|
|
|
| An OFDM System Based on Dual Tree Complex Wavelet Transform (DT-CWT)
|
|
Full
text: |
PDF(357.4KB) |
|
|
Source |
Signal Processing: An International Journal (SPIJ) |
|
Table of Contents |
|
|
Download
Complete Issue PDF(1.02MB) |
|
Volume: 3 Issue: 2 |
| |
Pages: 14-33 |
|
Publication
Date: April 2009 |
|
ISSN
(Online): 1985-2339 |
|
|
|
|
|
Pages |
14 - 21 |
|
Author(s) |
|
|
|
Published
Date |
18-05-2009 |
|
Publisher |
CSC
Journals, Kuala Lumpur,
Malaysia |
|
ADDITIONAL
INFORMATION |
| Keywords Abstract References Cited by Related Articles Collaborative
Colleague |
| |
|
| |
KEYWORDS: OFDM, WPT, DT-CWT, FFT, Multicarrier Modulation |
|
|
| |
|
|
| This Manuscript is indexed in the following databases/websites:- |
|
| 1. Directory of Open Access Journals (DOAJ) |
| 2. Free-Books-Online |
| 3. Scribd |
| 4. PDFCAST |
| 5. Docstoc |
| 6. Google Scholar |
| 7. WorldCat |
| 8. ScientificCommons |
| 9. Bielefeld Academic Search Engine (BASE) |
| 10. ResearchGATE |
| 11. refSeek |
| 12. Academic Index |
| 13. Socol@r |
| 14. Microsoft Academic Search |
| 15. iSEEK |
| |
|
| |
|
|
| As demand for higher data rates rises, need to develop more efficient wireless communication systems also rises. The work described in this paper is an effort in this direction. We have proposed a novel orthogonal frequency division multiplexing (OFDM) system based on dual – tree complex wavelet transform (DT-CWT). In the proposed scheme, DT-CWT is used in the place of fast Fourier transform (FFT). The proposed scheme achieves excellent improvements in bit error rate (BER) over conventional OFDM and wavelet packet modulation (WPM) systems. Moreover, the proposed scheme offers the better peak – to – average power ratio (PAPR) performance compared to conventional OFDM and WPM systems at the expense of acceptable computational complexity. The complementary cumulative distribution function (CCDF) of PAPR for the proposed scheme achieves about 3 dB improvement in PAPR over the traditional OFDM and WPM signals at 0.1% of CCDF. |
| |
|
| |
|
| |
| 1 |
A. Jamin, and P. Mahonen, “Wavelet Packet Modulation for Wireless Communications”, Wiley Wireless Communications and networking, Journal, vol. 5, no. 2, pp. 123-137, Mar. 2005. |
|
|
| 2 |
M. K. Lakshmanan and H. Nikookar, “A Review of Wavelets for Digital Wireless Communication”, Wireless Personal Communications Springer, 37: 387-420, Jan. 2006. |
|
|
| 3 |
M. Guatier, J. Lienard, and M. Arndt, “Efficient Wavelet Packet Modulation for Wireless Communication”, AICT’07 IEEE Computer Society, 2007. |
|
|
| 4 |
I. W. Selesnick, “the Double Density Dual-Tree DWT”, IEEE Transactions on Signal Processing, 52(5): 1304 – 1315, May 2004. |
|
|
| 5 |
J. M. Lina,”Complex Daubechies Wavelets: Filter Design and Applications”, ISAAC Conference, June 1997. |
|
|
| 6 |
A. R. Lindsey and J. C. Dill, “Wavelet packet modulation: a generalized method for orthogonally multiplexed communications,” in IEEE 27th Southeastern Symposium on System Theory, 1995, pp. 392–396. |
|
|
| 7 |
A. R. Lindsey, “Wavelet packet modulation for orthogonally multiplexed communication,” IEEE Transaction on Signal Processing, vol. 45, no. 5, pp. 1336–1339, May 1997. |
|
|
| 8 |
C. V. Bouwel, J. Potemans, S. schepers, B. Nauwelaers, and A. Van Caelle, “wavelet packet Based Multicarrier Modulation”, IEEE Communication and Vehicular Technology, SCVT 2000, pp. 131-138, 2000. |
|
|
| 9 |
Ivan W. Selesnick, Richard G. Baraniuk, and Nick G. Kingsbury, “The Dual-Tree Complex Wavelet Transform,” IEEE Signal Processing Mag, pp. 1053-5888, Nov 2005. |
|
|
| 10 |
N.G. Kingsbury, “The dual-tree complex wavelet transform: A new technique for shift invariance and directional filters,” in Proc. 8th IEEE DSP Workshop, Utah, Aug. 9–12, 1998, paper no. 86. |
|
|
| 11 |
N.G. Kingsbury, “Image processing with complex wavelets,” Philos. Trans. R. Soc. London A, Math. Phys. Sci., vol. 357, no. 1760, pp. 2543–2560, Sept. 1999. |
|
|
| 12 |
N.G. Kingsbury, “A dual-tree complex wavelet transform with improved orthogonality and symmetry properties,” in Proc. IEEE Int. Conf. Image Processing, Vancouver, BC, Canada, Sept. 10–13, 2000, vol. 2, pp. 375–378. |
|
|
| 13 |
N.G. Kingsbury, “Complex wavelets for shift invariant analysis and filtering of signals,” Appl. Comput. Harmon. Anal., vol. 10, no. 3, pp. 234–253, May 2001. |
|
|
| 14 |
I W. Selenick, “Hilbert transform pairs of wavelet bases,” IEEE Signal Processing Lett., vol. 8, no. 6, pp. 170-173, June 2001. |
|
|
| 15 |
H. Ozkaramanli and R. Yu, “on the phase condition and its solution for Hilbert transform pairs of wavelet bases,” IEEE Trans. Signal Processing, vol. 51, no. 12, pp. 2393–3294, Dec.2003. |
|
|
| 16 |
R. Yu and H. Ozkaramanli, “Hilbert transform pairs of orthogonal wavelet bases: Necessary and sufficient conditions”, IEEE Trans. Signal Processing IEEE Transactions on Signal Processing, vol. 53, no. 12, Dec. 2005. |
|
|
| 17 |
R. Yu and H. Ozkaramanli, “Hilbert transform pairs of biorthogonal wavelet bases”, IEEE Transactions on Signal Processing, VOL. 54, NO. 6, JUNE 2006. |
|
|
| 18 |
I. W. Selesnick, “the Double Density Dual-Tree DWT”, IEEE Transactions on Signal Processing, 52(5): 1304 – 1315, May 2004. |
|
|
| 19 |
J. M. Lina,”Complex Daubechies Wavelets: Filter Design and Applications”, ISAAC Conference, June 1997. |
|
|
| 20 |
M. K. Lakshmanan and H. Nikookar, “A Review of Wavelets for Digital Wireless Communication”, Wireless Personal Communications Springer, 37: 387-420, Jan. 2006. |
|
|
| 21 |
R. Van Nee and A. De Wild, “reduction the peak-to average power ratio of OFDM” 48th IEEE Vehicular Technology Conference, Ottawa, Canada, May 18-21, 1998; 2072-2076, IEEE New York, USA. |
|
|
| 22 |
H. Ochiai and H. Imai, “On the disitribution of the peak-to-average power ratio in OFDM signals”, IEEE Trans. Commun. 2001; 49, 282-289. |
|
|
| 23 |
S. wei, D. L. Goeckel, and P. E. Kelly “A modern extreme value theory approach to calculate the distribution of the peak-to-average power ratio in OFDM systems”, IEEE International Conference on Communications, New York, Apr. 28- May 2, 2002; vol. 3, 1686-1690; IEEENew York, USA. |
|
|
| 24 |
H. Yu, M. Chen and G. wei “Distribution of PAPR in DMT systems”, Electron. Lett. 2003; 39, 799-801. |
|
|
| 25 |
R. Rajbanshi, A. M. Wyglinski and G. J. Minden, “Multicarrier Transceivers: Peak-to-average |
|
|
| |
|
| |
|
| |
| |
|
| |
|
| |
| 1 |
SpringerLink |
| 2 |
www.IEEEExplore.com |
| 3 |
www.seminar.spaceutm.edu.my |
| 4 |
www.springerlink.com |
| 5 |
www.portal.acm.org |
| 6 |
www.scribd.com |
| |
|
| |
|
| |
|
| Mohamed Hussien Nerma : Colleagues
|
|
| Nidal S. Kamel : Colleagues
|
|
| Varun Jeoti : Colleagues
|
|
|
|
|
|
|
|
|
|
|