A Novel Multi-Input Bidirectional LSTM and HMM Based Approach for Target Recognition from Multi-Domain Radar Range Profiles
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Fei Gao | Amir Hussain | Huiyu Zhou | Jinping Sun | Jun Wang | Teng Huang
[1] Liu Hongwei,et al. Attention-based Recurrent Neural Network Model for Radar High-resolution Range Profile Target Recognition , 2016 .
[2] Geoffrey E. Hinton,et al. Deep Learning , 2015, Nature.
[3] Björn W. Schuller,et al. Introducing CURRENNT: the munich open-source CUDA recurrent neural network toolkit , 2015, J. Mach. Learn. Res..
[4] S. Wong. Multi-look fusion identification: a paradigm shift from quality to quantity in data samples , 2009, Defense + Commercial Sensing.
[5] Ric A. Romero,et al. Ground vehicle target signature identification with cognitive automotive radar using 24–25 and 76–77 GHz bands , 2018, IET Radar, Sonar & Navigation.
[6] Erfu Yang,et al. A Novel Semi-Supervised Convolutional Neural Network Method for Synthetic Aperture Radar Image Recognition , 2019, Cognitive Computation.
[7] Erfu Yang,et al. Dual-Branch Deep Convolution Neural Network for Polarimetric SAR Image Classification , 2017 .
[8] Weihong Deng,et al. Learning temporal features using LSTM-CNN architecture for face anti-spoofing , 2015, 2015 3rd IAPR Asian Conference on Pattern Recognition (ACPR).
[9] Geoffrey E. Hinton. A Practical Guide to Training Restricted Boltzmann Machines , 2012, Neural Networks: Tricks of the Trade.
[10] R. Sullivan. Radar Foundations for Imaging and Advanced Concepts , 2004 .
[11] Hagen Soltau,et al. Neural Speech Recognizer: Acoustic-to-Word LSTM Model for Large Vocabulary Speech Recognition , 2016, INTERSPEECH.
[12] T. Sakamoto,et al. Pedestrian classification based on radial velocity features of UWB Doppler radar images , 2012, 2012 International Symposium on Antennas and Propagation (ISAP).
[13] Timothy D. Ross,et al. Evaluation of SAR ATR algorithm performance sensitivity to MSTAR extended operating conditions , 1998, Defense, Security, and Sensing.
[14] Jürgen Schmidhuber,et al. Long Short-Term Memory , 1997, Neural Computation.
[15] Zheng Bao,et al. A two-distribution compounded statistical model for Radar HRRP target recognition , 2006, IEEE Trans. Signal Process..
[16] Chen Hu,et al. SAR Target Recognition Using the Multi-aspect-aware Bidirectional LSTM Recurrent Neural Networks , 2017, ArXiv.
[17] Steven C. Gustafson,et al. Hidden Markov models for classifying SAR target images , 2004, SPIE Defense + Commercial Sensing.
[18] Lawrence Carin,et al. Identification of ground targets from sequential high-range-resolution radar signatures , 2002 .
[19] Yan-Li Huang,et al. Analysis and pinning control for passivity of coupled reaction-diffusion neural networks with nonlinear coupling , 2018, Neurocomputing.
[20] Jürgen Schmidhuber,et al. Recurrent nets that time and count , 2000, Proceedings of the IEEE-INNS-ENNS International Joint Conference on Neural Networks. IJCNN 2000. Neural Computing: New Challenges and Perspectives for the New Millennium.
[21] Erfu Yang,et al. Visual Saliency Modeling for River Detection in High-Resolution SAR Imagery , 2018, IEEE Access.
[22] Shuanghui Zhang,et al. Radar HRRP Target Recognition Based on Stacked Autoencoder and Extreme Learning Machine , 2018, Sensors.
[23] Andrew R. Webb,et al. Bayesian gamma mixture model approach to radar target recognition , 2003 .
[24] Demetri Psaltis,et al. Correlation filters for aircraft identification from radar range profiles , 1993 .
[25] Jürgen Schmidhuber,et al. Framewise phoneme classification with bidirectional LSTM and other neural network architectures , 2005, Neural Networks.
[26] Xiaojie Yao,et al. Multiple Mode SAR Raw Data Simulation and Parallel Acceleration for Gaofen-3 Mission , 2018, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing.
[27] D. Gross,et al. A neural network ATR for high range resolution radar signature recognition of moving ground targets , 1999, Conference Record of the Thirty-Third Asilomar Conference on Signals, Systems, and Computers (Cat. No.CH37020).
[28] Hoi-Shun Lui,et al. Evolutions of Partial and Global Resonances in Transient Electromagnetic Scattering , 2008, IEEE Antennas and Wireless Propagation Letters.
[29] Pascal Vincent,et al. Stacked Denoising Autoencoders: Learning Useful Representations in a Deep Network with a Local Denoising Criterion , 2010, J. Mach. Learn. Res..
[30] David Vandyke,et al. Semantically Conditioned LSTM-based Natural Language Generation for Spoken Dialogue Systems , 2015, EMNLP.
[31] Qingshan Liu,et al. Bidirectional-Convolutional LSTM Based Spectral-Spatial Feature Learning for Hyperspectral Image Classification , 2017, Remote. Sens..
[32] Ariel Etinger,et al. Millimeter Wave High Resolution Radar Accuracy in Fog Conditions—Theory and Experimental Verification , 2018, Sensors.
[33] Z. Bao,et al. Properties of high-resolution range profiles , 2002 .
[34] Shujun Liu,et al. Time-Frequency Feature Extraction of HRRP Using AGR and NMF for SAR ATR , 2015, J. Electr. Comput. Eng..
[35] M. Persson,et al. Joint Time-Frequency Analysis of Transient Electromagnetic Scattering from a Subsurface Target , 2012, IEEE Antennas and Propagation Magazine.
[36] Jiri Matas,et al. On Combining Classifiers , 1998, IEEE Trans. Pattern Anal. Mach. Intell..
[37] Alessio Balleri,et al. Biomimetic Echolocation With Application to Radar and Sonar Sensing , 2014, Proceedings of the IEEE.
[38] Erfu Yang,et al. A New Algorithm for SAR Image Target Recognition Based on an Improved Deep Convolutional Neural Network , 2018, Cognitive Computation.
[39] Eduard H. Hovy,et al. End-to-end Sequence Labeling via Bi-directional LSTM-CNNs-CRF , 2016, ACL.
[40] Robert L. Williams,et al. Automatic target recognition of time critical moving targets using 1D high range resolution (HRR) radar , 1999 .
[41] Erik Blasch,et al. Robust multi-look HRR ATR investigation through decision-level fusion evaluation , 2008, 2008 11th International Conference on Information Fusion.
[42] Carmine Clemente,et al. Micro-doppler-based in-home aided and unaided walking recognition with multiple radar and sonar systems , 2017 .
[43] Michael Lee Bryant,et al. Standard SAR ATR evaluation experiments using the MSTAR public release data set , 1998, Defense, Security, and Sensing.
[44] Mengdao Xing,et al. On the aspect sensitivity of high resolution range profiles and its reduction methods , 2000, Record of the IEEE 2000 International Radar Conference [Cat. No. 00CH37037].
[45] Hao Ling,et al. Time-Frequency Transforms for Radar Imaging and Signal Analysis , 2002 .
[46] V Jithesh,et al. LSTM recurrent neural networks for high resolution range profile based radar target classification , 2017, 2017 3rd International Conference on Computational Intelligence & Communication Technology (CICT).
[47] Hoi-Shun Lui,et al. Joint Time-Frequency Analysis on UWB radar signals , 2007 .
[48] Naveen Kumar,et al. An Overview of Automatic Target Recognition Systems for Underwater Mine Classification , 2016 .
[49] Michael Gadringer,et al. Highly scalable radar target simulator for autonomous driving test beds , 2017, 2017 European Radar Conference (EURAD).
[50] David Beckman,et al. Comparison of features from SAR and GMTI imagery of ground targets , 2003, SPIE Defense + Commercial Sensing.
[51] Xiang Li,et al. An Adaptive Feature Learning Model for Sequential Radar High Resolution Range Profile Recognition , 2017, Sensors.
[52] Joseph A. O'Sullivan,et al. Automatic target recognition using sequences of high resolution radar range-profiles , 2000, IEEE Trans. Aerosp. Electron. Syst..
[53] Christopher D. Manning,et al. Improved Semantic Representations From Tree-Structured Long Short-Term Memory Networks , 2015, ACL.