• Chinese Optics Letters
  • Vol. 10, Issue s1, S11002 (2012)
Xiaofeng Li, Jun Xu, Jijun Luo, Lijia Cao, and Shengxiu Zhang
DOI: 10.3788/col201210.s11002 Cite this Article Set citation alerts
Xiaofeng Li, Jun Xu, Jijun Luo, Lijia Cao, Shengxiu Zhang. Ground target recognition based on imaging LADAR point cloud data[J]. Chinese Optics Letters, 2012, 10(s1): S11002 Copy Citation Text show less
References

[1] S. Roy, S. Se, and V. Kotamraju, Proc. SPIE 7696, 76960M (2010).

[2] E. Bovenkamp and K. Schutte, Proc. SPIE 7684, 76840Z (2010).

[3] N. R. Pal, T. C. Cahoon, and J. C. Bezdek, IEEE Trans. Fuzzy Systems 9, 44 (2001).

[4] M. R. Stevensa, M. Snorrasona, and S. Amphayb, Proc. SPIE 4729, 133 (2002).

[5] A. N. Vasile and R. M. Marino, Lincoln Laboratory J. 15, 61(2005).

[6] C. Growall, F. Gustafsson, and M. Millnert, IEEE Trans. Image Processing 15, 3401 (2006).

[7] C. Growall, "Ground Object Recognition Using Laser Radar Data: Geometric Fitting, Performance Analysis, and Applications", PhD Thesis, (Linkoings Universitet, 2006).

[8] C. Growall, G. Tolt, and D. Karlsson, Proc. SPIE 7696, 76960N (2010).

[9] R. D. Nieves and W. D. Reynolds, Proc. SPIE 7684, 76840Y (2010).

[10] M. D. Devore and X. Zhou, Proc. SPIE 6234, 623407 (2006.)

[11] X. Zhou, "Statistical Model-based Object Recognition from Three-Dimensional Point-Cloud Data" PhD Thesis, (University of Virginia, 2008).

[12] X. Zhou and M. D. Devore, IEEE Trans. Aerospace And Electronic Systems 44, 1416 (2008).

[13] I. O. Reyes, M. D. Devore, and P. A. Beling, Proc. SPIE 7696, 769615 (2010).

[14] M. D. Devore and A. J. Bateman, Proc. SPIE 7696, 76960R (2010).

[15] C. W. Baum and V. V. Veeravalli, IEEE Trans. Information Theory 40, 1994 (1994).

[16] V. P. Dragalin, A. G. Tartakovsky, and V. V. Veeravalli, IEEE Trans. Information Theory 45, 2448 (1999).

[17] V. P. Dragalin, A. G. Tartakovsky, and V. V. Veeravalli, IEEE Trans. Information Theory 46, 1366 (2000).

[18] J. H. Dixon, "LADAR Simulator User Manual", http://users.ece.gatech.edu/jdixon/ladar sim/ (October 12, 2010).

Data from CrossRef

[1] Odysseas Kechagias-Stamatis, Nabil Aouf. Evaluating 3D local descriptors for future LIDAR missiles with automatic target recognition capabilities. The Imaging Science Journal, 65, 428(2017).

[2] Qi-shu Qian, Yi-hua Hu, Nan-xiang Zhao, Min-le Li, Fu-cai Shao. Summed volume region selection based three-dimensional automatic target recognition for airborne LIDAR. Defence Technology(2019).

[3] Odysseas Kechagias-Stamatis, Nabil Aouf, Mark A. Richardson. 3D automatic target recognition for future LIDAR missiles. IEEE Transactions on Aerospace and Electronic Systems, 52, 2662(2016).

[4] Odysseas Kechagias-Stamatis, Nabil Aouf, David Nam. 3D Automatic Target Recognition for UAV Platforms. 2017 Sensor Signal Processing for Defence Conference (SSPD), 1(2017).

[5] Odysseas Kechagias-Stamatis, Nabil Aouf. A New Passive 3-D Automatic Target Recognition Architecture for Aerial Platforms. IEEE Transactions on Geoscience and Remote Sensing, 57, 406(2019).

Xiaofeng Li, Jun Xu, Jijun Luo, Lijia Cao, Shengxiu Zhang. Ground target recognition based on imaging LADAR point cloud data[J]. Chinese Optics Letters, 2012, 10(s1): S11002
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