Optical fiber seismic exploration technology has been widely used in marine oil and gas hydrate exploration due to its wide frequency band and high sensitivity. However, there are more types of noise in the collected data by optical fiber hydrophone than by a conventional piezoelectric seismic exploration system. Considering that the conventional denoising method is time-consuming, this paper proposes a convolutional neural network (CNN) and a ResUNet network based on deep learning to suppress the noises. ResUNet is improved on the basis of CNN; it is composed of a feature extraction part, a feature reconstruction part and a residual block. Both CNN and ResUNet networks achieved obvious denoising effects on optical fiber towed streamer seis...
The neural network denoising technique has achieved impressive results by being able to automaticall...
Deep Convolutional Neural Networks (DCNN) have the ability to learn complex features and are thus wi...
The fundamental frequency, or F0, is directly determined by the vibration frequency of sound source....
The aim of this thesis has been to look at the possibility of using a convolutional neural network t...
In recent years, distributed optical fiber acoustic sensing (DAS) technology has been increasingly u...
During seismic acquisition, reflected waves from the subsurface are recorded by sensors in seismic c...
Convolutional neural network- (CNN-) based deep learning (DL) architectures have achieved great succ...
Random noise is unavoidable in seismic data acquisition due to anthropogenic impacts or environmenta...
Distributed acoustic sensing (DAS) is regarded as a novel acquisition technology for seismic data. C...
The noise attenuation of seismic data is an indispensable part of seismic data processing, directly ...
Marine seismic interference noise occurs when energy from nearby marine seismic source vessels is re...
Various kinds of noise will be produced during the process of ultrasonic logging in high temperature...
Seismic field data are usually contaminated by random or complex noise, which seriously affect the q...
For economic and efficiency reasons, blended acquisition of seismic data is becoming increasingly co...
During seismic acquisition, reflected waves from the subsurface are recorded by sensors in seismic c...
The neural network denoising technique has achieved impressive results by being able to automaticall...
Deep Convolutional Neural Networks (DCNN) have the ability to learn complex features and are thus wi...
The fundamental frequency, or F0, is directly determined by the vibration frequency of sound source....
The aim of this thesis has been to look at the possibility of using a convolutional neural network t...
In recent years, distributed optical fiber acoustic sensing (DAS) technology has been increasingly u...
During seismic acquisition, reflected waves from the subsurface are recorded by sensors in seismic c...
Convolutional neural network- (CNN-) based deep learning (DL) architectures have achieved great succ...
Random noise is unavoidable in seismic data acquisition due to anthropogenic impacts or environmenta...
Distributed acoustic sensing (DAS) is regarded as a novel acquisition technology for seismic data. C...
The noise attenuation of seismic data is an indispensable part of seismic data processing, directly ...
Marine seismic interference noise occurs when energy from nearby marine seismic source vessels is re...
Various kinds of noise will be produced during the process of ultrasonic logging in high temperature...
Seismic field data are usually contaminated by random or complex noise, which seriously affect the q...
For economic and efficiency reasons, blended acquisition of seismic data is becoming increasingly co...
During seismic acquisition, reflected waves from the subsurface are recorded by sensors in seismic c...
The neural network denoising technique has achieved impressive results by being able to automaticall...
Deep Convolutional Neural Networks (DCNN) have the ability to learn complex features and are thus wi...
The fundamental frequency, or F0, is directly determined by the vibration frequency of sound source....