DocumentCode :
17697
Title :
Spatiotemporal Adaptive Time–Frequency Peak Filtering for Seismic Random Noise Attenuation
Author :
Xinhuan Deng ; Haitao Ma ; Yue Li ; Qian Zeng ; Guanghai Zhuang
Author_Institution :
Dept. of Inf., Jilin Univ., Changchun, China
Volume :
12
Issue :
10
fYear :
2015
fDate :
Oct. 2015
Firstpage :
2105
Lastpage :
2109
Abstract :
Recently, the time-frequency peak filtering (TFPF) has been frequently applied to seismic random noise attenuation. Conventionally, TFPF recovers seismic events in association with a fixed window length along the time direction. Thus, the spatial information of the events is ignored. Moreover, TFPF is approximately equivalent to a time-invariant low-pass filter, which cannot adapt quickly enough to track the rapidly changing signal. To solve these problems, we propose a spatiotemporal adaptive TFPF (ST-ATFPF) algorithm. In this approach, we recover the events by the ATFPF, which is based on convex sets and Viterbi algorithm in intercept time-slowness domain. The high-resolution Radon transform concentrates the energy of the events effectively, and the correlations between wavelets, which form the events in a seismic record, are exploited by ST-ATFPF, consequently. Additionally, ST-ATFPF can track the rapidly changing signal. Numerical results have demonstrated the validity of our algorithm with higher output SNR and less signal information loss than the traditional TFPF, Radon TFPF, and ATFPF.
Keywords :
Radon transforms; Viterbi detection; geophysical signal processing; seismic waves; time-frequency analysis; Radon transform; ST-ATFPF algorithm; Viterbi algorithm; fixed window length; intercept time-slowness domain; seismic event spatial information; seismic random noise attenuation; seismic record; signal information loss; spatiotemporal adaptive time-frequency peak filtering; time-invariant low-pass filter; Attenuation; Noise measurement; Signal to noise ratio; Spatiotemporal phenomena; Transforms; Viterbi algorithm; Adaptive; Viterbi algorithm; convex sets; high-resolution Radon transform; time–frequency peak filtering (TFPF); time???frequency peak filtering (TFPF);
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing Letters, IEEE
Publisher :
ieee
ISSN :
1545-598X
Type :
jour
DOI :
10.1109/LGRS.2015.2451152
Filename :
7161280
Link To Document :
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