A deep learning-based parametric inversion for forecasting water-filled bodies position using electromagnetic method
Authors/Creators
Description
We design a tunnel electromagnetic joint scan observation system and present a deep learning-based parametric inversion for improved tunnel electromagnetic imaging, designed specifically for tunnel prediction of water filled structures. It utilizes a configuration wherein transmitters scan along the surface while receivers are positioned within the tunnel, employing time-domain and frequency-domain transmitters and a multi-component receiver. The DL model for the first time provides parametric imaging of two different view, forming a self-checking mechanism, which can help constrain the predictions and reduce the non-uniqueness of the inversion. Trained by synthetic data, our system shows impressive adaptability to predict the 3D spatial position of water-filled anomalies and strong robustness in the tunnel environment with metal interference.
Before prediction, you need to download the pre-trained weight model which contain UNet_model/FTEM.ckpt.data-00000-of-00001, UNet_model/FTEM.ckpt.index, UNet_model/FTEM.h5. Then place the directory containing the weight model in the same directory as the prediction code. Then run: python predi.py
Files
Files
(206.5 MB)
| Name | Size | Download all |
|---|---|---|
|
md5:7015a38f1943f44ba40a756d3f0b6ac0
|
103.1 MB | Download |
|
md5:7a08772314b2a812205ad8f1a8d4b714
|
17.3 kB | Download |
|
md5:78c00de6f3d94d94334402cae5ae268a
|
103.4 MB | Download |