The aim of this work is to exploit Machine Learning (ML) for the analysis of Ground Penetrating Radar images. In particular, the objective is to apply a scaled-down version of DenseNet [1] architecture with a multiporse approach to extract from b-scan images of buried cylinders: the cylinder radius, the cylinder length, the depth with respect to the ground, and the relative permittivity of the cylinder and of the medium in which the cylinder is immersed. The cylinders have an infinite length or have a length much greater than the diameter. The main feature of the network chosen in order to extract those features is that each layer is connected to all subsequent layers, through the concatenation of the feature maps. Indeed, traditional conv...
<p>Current state of the art techniques for landmine detection in ground penetrating radar (GPR) util...
In this paper, we propose a novel pattern-recognition system to identify and classify buried objects...
In this paper, we propose a novel pattern-recognition system to identify and classify buried objects...
The aim of this work is to exploit Machine Learning (ML) for the analysis of Georadar (or Ground Pen...
The aim of this work is to exploit Machine Learning (ML) for the analysis of Georadar (or Ground Pen...
This work proposes a Machine Learning (ML) approach for the analysis and classification of Ground Pe...
In this paper, a Machine Learning (ML), and more specifically, a Deep Learning (DL) approach, is app...
Ground penetrating radar (GPR) is a geophysical inspection method that makes use of electromagnetic...
An electromagnetic approach based on neural networks for the GPR investigation of buried cylinders ...
This project focus on finding the relationship between 2D B-scan images and 3D B-scan images generat...
Automatic and efficient ground penetrating radar (GPR) data analysis remains a bottleneck, especiall...
This project focus on finding the relationship between 2D B-scan images and 3D B-scan images generat...
The recent demand for renewable energies has sparked interest in geothermal energy in Switzerland. I...
Ground Penetrating Radar (GPR) is often used for detecting non-intrusively buried targets, in road e...
The forward full-wave modeling of ground-penetrating radar (GPR) facilitates the understanding and i...
<p>Current state of the art techniques for landmine detection in ground penetrating radar (GPR) util...
In this paper, we propose a novel pattern-recognition system to identify and classify buried objects...
In this paper, we propose a novel pattern-recognition system to identify and classify buried objects...
The aim of this work is to exploit Machine Learning (ML) for the analysis of Georadar (or Ground Pen...
The aim of this work is to exploit Machine Learning (ML) for the analysis of Georadar (or Ground Pen...
This work proposes a Machine Learning (ML) approach for the analysis and classification of Ground Pe...
In this paper, a Machine Learning (ML), and more specifically, a Deep Learning (DL) approach, is app...
Ground penetrating radar (GPR) is a geophysical inspection method that makes use of electromagnetic...
An electromagnetic approach based on neural networks for the GPR investigation of buried cylinders ...
This project focus on finding the relationship between 2D B-scan images and 3D B-scan images generat...
Automatic and efficient ground penetrating radar (GPR) data analysis remains a bottleneck, especiall...
This project focus on finding the relationship between 2D B-scan images and 3D B-scan images generat...
The recent demand for renewable energies has sparked interest in geothermal energy in Switzerland. I...
Ground Penetrating Radar (GPR) is often used for detecting non-intrusively buried targets, in road e...
The forward full-wave modeling of ground-penetrating radar (GPR) facilitates the understanding and i...
<p>Current state of the art techniques for landmine detection in ground penetrating radar (GPR) util...
In this paper, we propose a novel pattern-recognition system to identify and classify buried objects...
In this paper, we propose a novel pattern-recognition system to identify and classify buried objects...