Detail publikace

Wiener Filtering with Spectrum Estimation by Wavelet Transformation

SYSEL, P.

Originální název

Wiener Filtering with Spectrum Estimation by Wavelet Transformation

Typ

článek ve sborníku ve WoS nebo Scopus

Jazyk

angličtina

Originální abstrakt

Current methods used to improve the signal-to-noise ratio mainly employ the Wiener filtering, or methods derived from it, such as spectral subtraction. All these methods assume that it is possible to determine or at least to estimate noise spectral characteristics. As can be derived, the estimation by the periodogram is not exact, but it contains a disturbance. Averaging the power spectra offers better results but the properties are simultaneously downgraded by a non-stationary disturbance. That is why the paper deals with the improvement of the power spectral density (PSD) estimation. To achieve this purpose we use the method of thresholding wavelet-transform coefficients, which we apply to each periodogram separately. Then the resultant estimation is used for the Wiener filter. The differences between the estimations obtained by the periodogram, by averaging and by this new method are shown in the paper. When we use wavelet transformation, a marked improvement in suppressing the disturbing signal appears. As a result, we obtain a good noise reduction while preserving a good response to changes in the nature of the disturbing signal.

Klíčová slova

Wiener, filter, wavelet, estimation

Autoři

SYSEL, P.

Rok RIV

2001

Vydáno

7. 7. 2001

Nakladatel

FEI STU

Místo

Bratislava, Slovensko

ISBN

0-7803-6490-2

Kniha

Proceedings of International Conference on Trends in Communications

Strany od

471

Strany do

474

Strany počet

4

BibTex

@inproceedings{BUT3119,
  author="Petr {Sysel}",
  title="Wiener Filtering with Spectrum Estimation by Wavelet Transformation",
  booktitle="Proceedings of International Conference on Trends in Communications",
  year="2001",
  pages="4",
  publisher="FEI STU",
  address="Bratislava, Slovensko",
  isbn="0-7803-6490-2"
}