The effect of translational variance in training and testing images on supervised buried threat detection algorithms for ground penetrating radar
暂无分享,去创建一个
[1] Joseph N. Wilson,et al. A Large-Scale Systematic Evaluation of Algorithms Using Ground-Penetrating Radar for Landmine Detection and Discrimination , 2007, IEEE Transactions on Geoscience and Remote Sensing.
[2] Maria A. Gonzalez-Huici,et al. Evaluation of landmine detection performance applying two different algorithms to GPR field data , 2013, Defense, Security, and Sensing.
[3] Lance E. Besaw,et al. Detecting buried explosive hazards with handheld GPR and deep learning , 2016, SPIE Defense + Security.
[4] Leslie M. Collins,et al. Histogram of gradient features for buried threat detection in ground penetrating radar data , 2012, 2012 IEEE International Geoscience and Remote Sensing Symposium.
[5] Hichem Frigui,et al. AN SVM classifier with HMM-based kernel for landmine detection using ground penetrating radar , 2010, 2010 IEEE International Geoscience and Remote Sensing Symposium.
[6] Leslie M. Collins,et al. Application of feature extraction methods for landmine detection using the Wichmann/Niitek ground-penetrating radar , 2005, IEEE Transactions on Geoscience and Remote Sensing.
[7] Leo Breiman,et al. Random Forests , 2001, Machine Learning.
[8] Leslie M. Collins,et al. A hidden Markov context model for GPR-based landmine detection incorporating stick-breaking priors , 2011, 2011 IEEE International Geoscience and Remote Sensing Symposium.
[9] Jordan M. Malof,et al. Target signature localization in GPR data by jointly estimating and matching templates , 2015, Defense + Security Symposium.
[10] Farid Melgani,et al. Automatic Analysis of GPR Images: A Pattern-Recognition Approach , 2009, IEEE Transactions on Geoscience and Remote Sensing.
[11] Corinna Cortes,et al. Support-Vector Networks , 1995, Machine Learning.
[12] Leslie M. Collins,et al. Target localization and signature extraction in GPR data using expectation-maximization and principal component analysis , 2014, Defense + Security Symposium.
[13] Kwang Hee Ko,et al. MULTI-FEATURE BASED DETECTION OF LANDMINES USING GROUND PENETRATING RADAR , 2013 .
[14] Paul D. Gader,et al. Model level fusion of edge histogram descriptors and gabor wavelets for landmine detection with ground penetrating radar , 2010, 2010 IEEE International Geoscience and Remote Sensing Symposium.
[15] Leslie M. Collins,et al. Histograms of Oriented Gradients for Landmine Detection in Ground-Penetrating Radar Data , 2014, IEEE Transactions on Geoscience and Remote Sensing.
[16] Kwang Hee Ko,et al. Multiple landmine detection algorithm using ground penetrating radar , 2012, 2012 IEEE International Geoscience and Remote Sensing Symposium.
[17] Leslie M. Collins,et al. Application of Markov random fields to landmine detection in ground penetrating radar data , 2008, SPIE Defense + Commercial Sensing.
[18] P.A. Torrione,et al. Performance of an adaptive feature-based processor for a wideband ground penetrating radar system , 2006, IEEE Transactions on Aerospace and Electronic Systems.
[19] Lance E. Besaw,et al. Deep learning algorithms for detecting explosive hazards in ground penetrating radar data , 2014, Defense + Security Symposium.
[20] Alauddin Bhuiyan,et al. Anti-personnel Mine Detection and Classification Using GPR Image , 2006, 18th International Conference on Pattern Recognition (ICPR'06).
[21] Leslie M. Collins,et al. Bayesian Context-Dependent Learning for Anomaly Classification in Hyperspectral Imagery , 2014, IEEE Transactions on Geoscience and Remote Sensing.
[22] Jordan M. Malof,et al. Learning improved pooling regions for the Histogram of Oriented Gradient (HOG) feature for buried threat detection in ground penetrating radar , 2017, Defense + Security.
[23] Paul D. Gader,et al. Landmine detection using discrete hidden Markov models with Gabor features , 2007, SPIE Defense + Commercial Sensing.
[24] Leslie M. Collins,et al. Recognizing subsurface target responses in ground penetrating radar data using convolutional neural networks , 2015, Defense + Security Symposium.
[25] Bill Triggs,et al. Histograms of oriented gradients for human detection , 2005, 2005 IEEE Computer Society Conference on Computer Vision and Pattern Recognition (CVPR'05).
[26] Paul D. Gader,et al. Detection and Discrimination of Land Mines based on Edge Histogram Descriptors and Fuzzy K-Nearest Neighbors , 2006, 2006 IEEE International Conference on Fuzzy Systems.
[27] Jordan M. Malof,et al. On Choosing Training and Testing Data for Supervised Algorithms in Ground-Penetrating Radar Data for Buried Threat Detection , 2016, IEEE Transactions on Geoscience and Remote Sensing.
[28] Paul D. Gader,et al. Feature and decision level sensor fusion of electromagnetic induction and ground penetrating radar sensors for landmine detection with hand-held units , 2002, Inf. Fusion.
[29] Leslie M. Collins,et al. Discrimination mode processing for EMI and GPR sensors for hand-held land mine detection , 2004, IEEE Transactions on Geoscience and Remote Sensing.
[30] Paul D. Gader,et al. Multiple-Instance Hidden Markov Models With Applications to Landmine Detection , 2015, IEEE Transactions on Geoscience and Remote Sensing.
[31] Leslie M. Collins,et al. Integration of lidar with the NIITEK GPR for improved performance on rough terrain , 2012, Other Conferences.
[32] Leslie M. Collins,et al. Multiple instance learning for landmine detection using ground penetrating radar , 2012, Other Conferences.
[33] Radford M. Neal. Pattern Recognition and Machine Learning , 2007, Technometrics.
[34] L.P. Ligthart,et al. Alternating-sign windowed energy projection of SAR focused GPR data , 2005, European Radar Conference, 2005. EURAD 2005..
[35] M. M. Mokji,et al. Automatic target detection in GPR images using Histogram of Oriented Gradients (HOG) , 2014, 2014 2nd International Conference on Electronic Design (ICED).
[36] Paul D. Gader,et al. Landmine detection with ground penetrating radar using hidden Markov models , 2001, IEEE Trans. Geosci. Remote. Sens..
[37] K. C. Ho,et al. Detection of deeply buried non-metal objects by ground penetrating radar using non-negative matrix factorization , 2015, Defense + Security Symposium.
[38] Paul D. Gader,et al. Detection and Discrimination of Land Mines in Ground-Penetrating Radar Based on Edge Histogram Descriptors and a Possibilistic $K$-Nearest Neighbor Classifier , 2009, IEEE Transactions on Fuzzy Systems.
[39] Leslie M. Collins,et al. Texture Features for Antitank Landmine Detection Using Ground Penetrating Radar , 2007, IEEE Transactions on Geoscience and Remote Sensing.
[40] Lance E. Besaw,et al. Deep convolutional neural networks for classifying GPR B-scans , 2015, Defense + Security Symposium.
[41] Hichem Frigui,et al. A fisher vector representation of GPR data for detecting buried objects , 2016, SPIE Defense + Security.
[42] G. Nadim,et al. Wavelet packets for GPR detection of non-metallic anti-personnel land mines based on higher-order-statistic , 2005, Proceedings of the 3rd International Workshop on Advanced Ground Penetrating Radar, 2005. IWAGPR 2005..
[43] Joseph N. Wilson,et al. An evaluation of several fusion algorithms for anti-tank landmine detection and discrimination , 2012, Inf. Fusion.
[44] Leslie M. Collins,et al. Keypoint-based image processing for landmine detection in GPR data , 2012, Other Conferences.
[45] Hichem Frigui,et al. Ensemble hidden Markov models with application to landmine detection , 2015, EURASIP J. Adv. Signal Process..