Current ground penetrating radars (GPR) have been tested for land mine detection, but they have generally been costly and have poor performance. Comprehensive modeling and experimentation must be done to predict the electromagnetic (EM) signatures of mines to access the effect of clutter on the EM signature of the mine, and to understand the merit and limitations of using radar for various mine detection scenarios. This modeling can provide a basis for advanced radar design and detection techniques leading to superior performance. Lawrence Livermore National Laboratory (LLNL) has developed a radar technology that when combined with comprehensive modeling and detection methodologies could be the basis of an advanced mine detection system. Mi...
The Lawrence Livermore National Laboratory has developed radar and imaging technologies with potenti...
The application of ground-penetrating radar (GPR) in humanitarian demining labors presents two major...
In previous papers, we reported on the high-resolution ground-penetrating radar system designed, bui...
Ground penetrating radar (GPR) is a promising technique for humanitarian demining applications as it...
The performance of ground-penetrating (GPR) radar is determined fundamentally by the soil electromag...
The Lawrence Livermore National Laboratory (LLNL) has developed radar and imaging technologies with ...
Landmines and unexploded ordinance (UXO) are laid during a conflict against enemy forces. However, t...
At present many million anti-personnel mines are polluting our environment in many countries. They c...
Landmines and unexploded ordinance (UXO) are laid during a conflict against enemy forces. However, t...
This work explores possible performance enhancements for landmine detection algorithms using frequen...
Ground-penetrating radar (GPR) proves to be a very valuable tool in the field of humanitarian demini...
Ground-penetrating radar (GPR) proves to be a very valuable tool in the field of humanitarian demini...
Ground penetrating radar (GPR), which can detect shallow buried low dielectric contrast objects in a...
The application of ground-penetrating radar (GPR) in humanitarian demining labors presents two major...
The assessment of the performances of ground-penetrating radar (GPR) in humanitarian demining is an ...
The Lawrence Livermore National Laboratory has developed radar and imaging technologies with potenti...
The application of ground-penetrating radar (GPR) in humanitarian demining labors presents two major...
In previous papers, we reported on the high-resolution ground-penetrating radar system designed, bui...
Ground penetrating radar (GPR) is a promising technique for humanitarian demining applications as it...
The performance of ground-penetrating (GPR) radar is determined fundamentally by the soil electromag...
The Lawrence Livermore National Laboratory (LLNL) has developed radar and imaging technologies with ...
Landmines and unexploded ordinance (UXO) are laid during a conflict against enemy forces. However, t...
At present many million anti-personnel mines are polluting our environment in many countries. They c...
Landmines and unexploded ordinance (UXO) are laid during a conflict against enemy forces. However, t...
This work explores possible performance enhancements for landmine detection algorithms using frequen...
Ground-penetrating radar (GPR) proves to be a very valuable tool in the field of humanitarian demini...
Ground-penetrating radar (GPR) proves to be a very valuable tool in the field of humanitarian demini...
Ground penetrating radar (GPR), which can detect shallow buried low dielectric contrast objects in a...
The application of ground-penetrating radar (GPR) in humanitarian demining labors presents two major...
The assessment of the performances of ground-penetrating radar (GPR) in humanitarian demining is an ...
The Lawrence Livermore National Laboratory has developed radar and imaging technologies with potenti...
The application of ground-penetrating radar (GPR) in humanitarian demining labors presents two major...
In previous papers, we reported on the high-resolution ground-penetrating radar system designed, bui...