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Stefan cel Mare
University of Suceava
Faculty of Electrical Engineering and
Computer Science
13, Universitatii Street
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ROMANIA

Print ISSN: 1582-7445
Online ISSN: 1844-7600
WorldCat: 643243560
doi: 10.4316/AECE


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  2/2009 - 16

Improved Nyquist Filters with a Transfer Characteristic Derived from a Staircase Characteristic Interpolated with Sine Functions

ALEXANDRU, N. D. See more information about ALEXANDRU, N. D. on SCOPUS See more information about ALEXANDRU, N. D. on IEEExplore See more information about ALEXANDRU, N. D. on Web of Science, POHOATA, S. See more information about POHOATA, S. on SCOPUS See more information about POHOATA, S. on SCOPUS See more information about POHOATA, S. on Web of Science
 
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Download PDF pdficon (465 KB) | Citation | Downloads: 1,284 | Views: 1,820

Author keywords
DVB, Nyquist filter, Improved impulse response, Inter-Symbol-Interference, OFDM

References keywords
systems(6), pulse(5), ofdm(5), pulses(4), nyquist(4), beaulieu(4)
Blue keywords are present in both the references section and the paper title.

About this article
Date of Publication: 2009-06-02
Volume 9, Issue 2, Year 2009, On page(s): 103 - 108
ISSN: 1582-7445, e-ISSN: 1844-7600
Digital Object Identifier: 10.4316/AECE.2009.02016
Web of Science Accession Number: 000268723600016
SCOPUS ID: 70349177783

Abstract
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This paper investigates a novel approach for constructing a family of ISI-free pulses produced by improved Nyquist filters with a transfer characteristic derived from an ideal staircase frequency characteristic using interpolation with sine functions. They equal or outperform some recently proposed pulses in terms of ISI performance in the presence of sampling errors. The results for error probability outperform the 4th degree polynomial pulse for a reasonable number of interpolation intervals. The proposed pulses were also investigated for OFDM use including DVB systems in order to reduce their sensitivity to frequency offset. The results presented in this paper equal those of recently found pulses in terms of intercarrier interference (ICI) power.


References | Cited By  «-- Click to see who has cited this paper

[1] A. Assalini, and A. M. Tonello, "Improved Nyquist pulses", IEEE Communications Letters, vol. 8, pp. 87 - 89, Febr.2004
[CrossRef] [Web of Science Times Cited 100] [SCOPUS Times Cited 117]


[2] N. C. Beaulieu, "The evaluation of error probabilities for intersymbol and cochannel interference", IEEE Trans. Commun., vol. 31, pp.1740 - 1749, Dec.1991
[CrossRef] [Web of Science Times Cited 159] [SCOPUS Times Cited 2]


[3] C. Beaulieu, and M. O. Damen, "Parametric construction of Nyquist-I pulses", IEEE Trans. Communications, vol. COM-52, pp. 2134 - 2142, Dec.2004
[CrossRef] [Web of Science Times Cited 97] [SCOPUS Times Cited 108]


[4] N. C. Beaulieu, C. C. Tan, and M. O. Damen, "A better than Nyquist pulse", IEEE Commun. Lett., vol. 5, pp. 367-368, Sept.2001
[CrossRef] [Web of Science Times Cited 175] [SCOPUS Times Cited 204]


[5] S. Chandan, P. Sandeep, and A.K. Chaturvedi, "A family of ISI-free polynomial pulses", IEEE Commun. Lett., vol. 9, No.6, pp. 496-498, June 2005
[CrossRef] [Web of Science Times Cited 62] [SCOPUS Times Cited 76]


[6] T. Demeechai, "Pulse-shaping filters with ISI-free matched and unmatched filter properties", IEEE Trans. Commun., vol. 46, pp. 992, Aug.1998
[CrossRef] [Web of Science Times Cited 15] [SCOPUS Times Cited 17]


[7] C.W. Helstrom, "Calculating error probabilities for intersymbol and cochannel interference", IEEE Trans. Commun., vol. 34, pp. 430-435, May 1986
[CrossRef] [Web of Science Times Cited 77] [SCOPUS Times Cited 97]


[8] V. Kumbasar, O. Kucur, "ICI reduction in OFDM systems by using improved sinc power pulse", Digital Signal Processing, 17, pp.997-1006, 2007
[CrossRef] [Web of Science Times Cited 52] [SCOPUS Times Cited 72]


[9] Onofrei, L.A., Alexandru, N.D., "Optimization of the Improved Nyquist Filter with a Piece-Wise Rectangular Characteristic", Proc. of 9 th Int. Conference Development and Application Systems, Suceava, 23-25 May, pp.128-137, 2008.

[10] H.M. Mourad, "Reducing ICI in OFDM systems using a proposed pulse shape", Wireless Personal Communications, 40, pp.41-48, 2006
[CrossRef] [Web of Science Times Cited 30] [SCOPUS Times Cited 46]


[11] Peng Tan, N.C. Beaulieu, "Reduced ICI in OFDM Systems Using the Better Than Raised-Cosine Pulse", IEEE Commun. Lett., vol. 8, No. 3, pp.135-137, March 2004
[CrossRef] [Web of Science Times Cited 104] [SCOPUS Times Cited 135]


[12] Pollet T., Bladel M.V., Moeneclaey M., "BER sensitivity of OFDM systems to carrier frequency offset and Wiener phase noise", IEEE Trans. Commun., vol. 4, pp. 191-193, Feb./Mar./Apr1995
[CrossRef] [Web of Science Times Cited 1197] [SCOPUS Times Cited 1522]


[13] P. Sandeep, S. Chandan, and A.K. Chaturvedi, "ISI-Free pulses with reduced sensitivity to timing errors", IEEE Commun. Lett., vol. 9, No.4, pp. 292 - 294, April 2005
[CrossRef] [Web of Science Times Cited 52] [SCOPUS Times Cited 56]


[14] Khoa N. Le, "Insight on ICI and its effects on performance of OFDM systems", Digital Signal Processing, vol. 18 (2008) 876-884
[CrossRef] [Web of Science Times Cited 59] [SCOPUS Times Cited 61]


[15] N.D. Alexandru, M.L. Alexandru, "Spectral Shaping for Codes with P.S.D. Expressed by Rational Functions", Advances in Electrical and Computer Engineering, vol 8, no. 1,pg. 31-36 (2008)
[CrossRef] [Full Text] [SCOPUS Times Cited 3]


References Weight

Web of Science® Citations for all references: 2,179 TCR
SCOPUS® Citations for all references: 2,516 TCR

Web of Science® Average Citations per reference: 145 ACR
SCOPUS® Average Citations per reference: 168 ACR

TCR = Total Citations for References / ACR = Average Citations per Reference

We introduced in 2010 - for the first time in scientific publishing, the term "References Weight", as a quantitative indication of the quality ... Read more

Citations for references updated on 2024-12-21 12:59 in 96 seconds.




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Stefan cel Mare University of Suceava, Romania


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