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Comparison of Wavelet Decomposition Coefficients Transmission Systems Using Splines and Classical Types of Modulation

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Wavelets are becoming increasingly used as a tool for the analysis of non-stationary data. To transmit the coefficients resulting from the signal decomposition traditionally their combination into a single data packet is used, without including unequal energy contribution of each factor and impact of the decomposition level. This paper analyzes (at different transmission speeds) the signals properties produced by classical modulation methods and spline modulation for wavelet coefficients transmission proposed by the author. For all signal types the additive Gaussian noise is used as a noise disturbance.
Rocznik
Tom
Strony
25--31
Opis fizyczny
Bibliogr. 14 poz., rys.
Twórcy
autor
  • Radio Engineering Faculty, Institute of Air Navigation, National Aviation University, Kosmonavta Komarova 1, 03058 Kiev, Ukraine
Bibliografia
  • [1] M. Akay, “Wavelet applications in medicine”, IEEE Spectrum, vol. 34, no. 5, pp. 50–56, 1997.
  • [2] G. Evangelista “Comb and multiplexed wavelet transforms and their applications to signal processing”. IEEE Trans. Sig. Proces., vol. 42, no. 2, pp. 292–303, 1994.
  • [3] F. B¨omers, “Wavelets in real-time digital audio processing: analysis and sample implementations”, M.Sc. thesis, Universitat Mannheim, 2000 [Online]. Available: http://www.boemers.com/personal/thesis.pdf
  • [4] D. V. Beilekchi, “Model’ ustroistva peredachi tsifrovogo rechevogo signala po kanalu svyazi”, Metody i Ustroistva Peredachi i Obrabotki Informatsii”, no. 1, pp. 83–89, 2007 (in Russian) [Online]. Available: http://rts-md.com/docs/archives/MIU 07 1/chapter%204.pdf
  • [5] A. N. Akansu and R. A. Haddad, Multiresolution Signal Decomposition: Transforms, Subbands, and Wavelets. Orlando, FL, USA: Academic Press, 1992.
  • [6] T. Edwards, “Discrete wavelet transforms: theory and implementation”, Stanford University, CA, USA, 1992.
  • [7] A. Jamin and P. Mähönen, “Wavelet packet modulation for wireless communications”, J. Wirel. Commun. & Mob. Comput., vol. 5, no. 2, pp. 123–137, 2005.
  • [8] J. Monera-Llorca and W.-S Lu, “An improved wavelet-packetdivision multiple access system”, in Proc. IEEE Pacific Rim Conf. on Comp. and Sig. PACRIM 1999, Victoria, BC, Canada, 1999, pp. 495–498.
  • [9] W. Z. Zhong and Q. Guo, “Performance evaluation of wavelet packet modulation over mobile satellite channel”, Inform. Technol. J., vol. 8, no. 3, pp. 310–317, 2009.
  • [10] M. C. Gill, “Coded-waveform design for high speed data transfer over high frequency radio channels”, Ph.D. thesis, School of Electronic Engineering, University of South Australia, 1998.
  • [11] N. Nikolov and Z. Nikolov, “A communication system with wavelet packet division multiplexing in an environment of White Gaussian Noise and narrow-band interference,” Cybernet. & Inform. Technol., vol. 5, no. 1, pp. 100–114, 2005.
  • [12] A. I. Kutin, “Mnogokanal’naya sistema peredachi dannykh v splainovykh bazisakh (Multi-channel data transmission system in the spline bases)”, Vesnik Natsional’nogo universiteta “L’vovs’kaya politekhnika”, Radioelektronika i Telekommunikatsii (Radio electronics and Telecommunications), no. 796, pp. 75–82, 2014 (in Ukrainian).
  • [13] B. Sklar, Digital Communications: Fundamentals and Applications, 2nd ed. Upper Saddle River, NJ, USA: Prentice-Hall, 2001.
  • [14] R. Stojanovic and S. Knezevic, “Optimization and implementation of the wavelet based algorithms for embedded biomedical signal processing”, Comp. Sci. & Inform. Sys., vol. 10, no. 1, pp. 503–523, 2013.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-cc786c8e-f8ed-483b-a4aa-b2c87bca6280
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