返回
First-Break Picking Method Based on the Difference Between Multiwindow Energy Ratios
DOI:10.1109/TGRS.2023.3255261.png)
摘要
En 中文
First-break picking is an important step during the processing of both passive and active seismic data. Many automated algorithms have been developed to detect first-break points in large volumes of seismic data. However, it remains difficult to determine precise first-break points in seismograms with low signal-to-noise ratios. Therefore, we present a new approach based on the differences between multiwindow energy ratios (DERs) that minimizes the effects of noise. First, the DER is defined and a thresholding method for detecting first-break points using the DERs is proposed. Thresholding can be varied depending on the DER parameters, which ensures reliable results even if the parameters change. We use two types of seismic data to establish and verify the DER method: big data derived via global earthquake monitoring STanford EArthquake Dataset (STEAD) and ocean bottom cable (OBC) data acquired offshore of Pohang, Republic of Korea. We investigated the effects of parameter changes on the DER picking results. Good picking performance was verified under low signal-to-noise conditions and compared to conventional first-break picking methods. The DER accuracy was higher than that of conventional methods and outliers were rare.
Keyword:
Signal to noise ratio
Manuals
Monitoring
Earthquakes
Receivers
Oceans
Noise level
Earthquake monitoring
first-break picking
ocean bottom cable (OBC)
receiver positioning
threshold
期刊
IF:
8.6
论文数:
2.1W
被引数:
10.7W
机构
引用论文
The Use of Wavelet-Based Denoising Techniques to Enhance the First-Arrival Picking on Seismic Traces
STanford EArthquake Dataset (STEAD): A Global Data Set of Seismic Signals for AI斯坦福地震数据集 (STEAD): 人工智能地震信号的全球数据集
IEEE ACCESS
IF3.6
Electrochemically assisted micro localized grafting of aptamers in a microchannel engraved in fluorinated thermoplastic polymer Dyneon THV
RSC Advances
IF0
SegNet-based first-break picking via seismic waveform classification directly from shot gathers with sparsely distributed traces
PETROLEUM SCIENCE
IF6.1

