A de-noising algorithm based on wavelet threshold-exponential adaptive window width-fitting for ground electrical source airborne transient electromagnetic signal

被引:35
作者
Ji, Yanju [1 ]
Li, Dongsheng [1 ]
Yu, Mingmei [1 ]
Wang, Yuan [1 ]
Wu, Qiong [1 ]
Lin, Jun [1 ]
机构
[1] Jilin Univ, Coll Instrumentat & Elect Engn, Changchun 130026, Peoples R China
基金
中国国家自然科学基金;
关键词
GREATEM signal; White noise; Electromagnetic noise; Wavelet threshold; Exponential adaptive window width-fitting;
D O I
10.1016/j.jappgeo.2016.03.001
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The ground electrical source airborne transient electromagnetic system (GREATEM) on an unmanned aircraft enjoys considerable prospecting depth, lateral resolution and detection efficiency, etc. In recent years it has become an important technical means of rapid resources exploration. However, GREATEM data are extremely vulnerable to stationary white noise and non-stationary electromagnetic noise (sferics noise, aircraft engine noise and other human electromagnetic noises). These noises will cause degradation of the imaging quality for data interpretation. Based on the characteristics of the GREATEM data and major noises, we propose a de-noising algorithm utilizing wavelet threshold method and exponential adaptive window width-fitting. Firstly, the white noise is filtered in the measured data using the wavelet threshold method. Then, the data are segmented using data window whose step length is even logarithmic intervals. The data polluted by electromagnetic noise are identified within each window based on the discriminating principle of energy detection, and the attenuation characteristics of the data slope are extracted. Eventually, an exponential fitting algorithm is adopted to fit the attenuation curve of each window, and the data polluted by non-stationary electromagnetic noise are replaced with their fitting results. Thus the non-stationary electromagnetic noise can be effectively removed. The proposed algorithm is verified by the synthetic and real GREATEM signals. The results show that in GREATEM signal, stationary white noise and non-stationary electromagnetic noise can be effectively filtered using the wavelet threshold-exponential adaptive window width-fitting algorithm, which enhances the imaging quality. (C) 2016 Elsevier B.V. All rights reserved.
引用
收藏
页码:1 / 7
页数:7
相关论文
共 14 条
[1]  
ALLAH SA, 2013, J APPL GEOPHYS, V99, P1
[2]  
ALLAH SA, 2014, EXPLOR GEOPHYS, V45, P49
[3]   Sferics noise reduction in time-domain electromagnetic systems: application to MegaTEMII signal enhancement [J].
Bouchedda, Abderrezak ;
Chouteau, Michel ;
Keating, Pierre ;
Smith, Richard .
EXPLORATION GEOPHYSICS, 2010, 41 (04) :225-239
[4]   Further investigations of underground resistivity structures in coastal areas using grounded-source airborne electromagnetics [J].
Ito, Hisatoshi ;
Mogi, Toru ;
Jomori, Akira ;
Yuuki, Youichi ;
Kiho, Kenzo ;
Kaieda, Hideshi ;
Suzuki, Koichi ;
Tsukuda, Kazuhiro ;
Abd Allah, Sabry .
EARTH PLANETS AND SPACE, 2011, 63 (08) :E9-E12
[5]  
Ji Y.J., 2011, INT C GREEN ENV SUST, V6, P1537
[6]  
Kass MA, 2008, NEAR-SURFACE GEOPHYSICS AND HUMAN ACTIVITY, P261
[7]   Ground-Airborne electromagnetic signals de-noising using a combined wavelet transform algorithm [J].
Li Su-Yi ;
Lin Jun ;
Yang Gui-Hong ;
Tian Pei-Pei ;
Wang Yuan ;
Yu Sheng-Bao ;
Ji Yan-Ju .
CHINESE JOURNAL OF GEOPHYSICS-CHINESE EDITION, 2013, 56 (09) :3145-3152
[8]  
Mogi T., 1998, Exploration Geophysics, V29, P61, DOI [10.1071/eg998061, DOI 10.1071/EG998061]
[9]   Grounded electrical-source airborne transient electromagnetic (GREATEM) survey of Mount Bandai, north-eastern Japan [J].
Mogi, Toru ;
Kusunoki, Ken'ichirou ;
Kaieda, Hideshi ;
Ito, Hisatoshi ;
Jomori, Akira ;
Jomori, Nobuhide ;
Yuuki, Youichi .
EXPLORATION GEOPHYSICS, 2009, 40 (01) :1-7
[10]  
Nabighian M.N., 1988, ELECTROMAGNETIC METH, V1