The W transform with a chirp-modulated window
File(s)
Author(s)
Zhao, Zhencong
Rao, Ying
Wang, Yanghua
Type
Journal Article
Abstract
A high-resolution time-frequency spectrum is desirable for processing and interpreting seismic data. The standard W transform is a method that effectively preserves the resolution in the low-frequency region of the time-frequency spectrum of non-stationary seismic signals. To further increase the energy concentration of the time-frequency spectrum estimated with the standard W transform, we propose to combine the W transform with a chirp-modulated window. The chirp rate in the chirp-modulated window can control the rotation of the window in the time-frequency plane to achieve a better match with the time-frequency spectrum. Unlike the general linear chirplet transform, the chirp rate in the proposed algorithm can be directly determined with the estimated instantaneous frequency. It has been shown that the W transform with a chirp-modulated window maintains the resolution of the time-frequency spectrum and improves the energy concentration around the dominant frequency against noise. To speed up the computational process of the W transform with a chirp-modulated window, we formulate the transform as a matrix-vector multiplication, which can be accelerated by using GPU computations. The application of the proposed algorithm to synthetic and field data shows that the frequency anomalies can be easily identified with the proposed algorithm.
Date Issued
2023-03-24
Date Acceptance
2022-12-16
Citation
Geophysics, 2023, 88 (2), pp.V93-V100
ISSN
0016-8033
Publisher
Society of Exploration Geophysicists
Start Page
V93
End Page
V100
Journal / Book Title
Geophysics
Volume
88
Issue
2
Copyright Statement
© 2023 Society of Exploration Geophysicists.
License URL
Publication Status
Published
Date Publish Online
2023-03-01
