The Selection of the Optimal Gator Wavelet Shape Factor Using the Shannon Entropy Concept

Shannon 엔트로피 개념을 이용한 가보 웨이블렛 최적 형상의 선정

  • 홍진철 (서울대 기계항공공학부 대학원, 멀티스케일 설계연구단) ;
  • 김윤영 (서울대 기계항공공학부, 멀티스케일 설계연구단)
  • Published : 2002.11.01

Abstract

The continuous Gabor wavelet transform (GWT) has been utilized as a useful time-frequency analysis tool to identify the rapidly-varying characteristics of some wave signals. In the application of GWT, it is important to select the Gabor wavelet with the optimal shape factor by which the time-frequency distribution of a signal can be accurately estimated. To find the signal-dependent optimal Gabor wavelet shape factor, the notion of the Shannon entropy which mesures the extent of signal energy concentration in the time-frequency plane is employed. To verify the validity of the present entropy-based scheme, we have applied it to the time-frequency analysis of a set of elastic bending wave signals generated by an impact in a solid cylinder.

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