1 |
PANDOLFO L , VITA P D , BANDINELLI M , et al. A flexible, general-purpose code based on the iterative physical optics algorithm[J]. IEEE Trans.on Antennas and Propagation, 2017, 59 (10): 150- 158.
|
2 |
XIAO Z , JI Y Z , YU W M , et al. Time-domain shooting and bouncing rays method based on beam tracing technique[J]. IEEE Trans.on Antennas and Propagation, 201, 63 (9): 4037- 4048.
|
3 |
FAN T , GUO L X , LYU B , et al. An improved backward SBR- PO/PTD hybrid method for the backward scattering prediction of an electrically large target[J]. IEEE Antennas and Wireless Propagation Letters, 2016, 15, 512- 515.
|
4 |
CANER Ö.Inverse synthetic aperture radar imaging with Matlab algorithms[M]. Wiley, 2012.
|
5 |
LI Y, XU F. Target reconstruction based on scattering mechanisms[C]//Proc.of the 5th IEEE Asia-Pacific Conference on Synthetic Aperture Radar, 2015.
|
6 |
HE X Y, TONG G D, GAO W. The method of adaptive gaussian decomposition based recognition and extraction of scattering mechanisms[C]//Proc.of the 12th International Symposium on Antennas, Propagation and EM Theory, 2018.
|
7 |
YAN S , REN S , NIE Z P , et al. Efficient analysis of electromagnetic scattering from electrically large complex objects by using phase-extracted basis functions[J]. IEEE Trans.on Antennas and Propagation Magazine, 2012, 54 (5): 88- 108.
|
8 |
KIM K T , KIM H T . Two-dimensional scattering center extraction based on multiple elastic modules network[J]. IEEE Trans.on Antennas and Propagation, 2003, 51 (4): 848- 861.
|
9 |
DING B Y , WEN G J , HUANG X H , et al. Target recognition in synthetic aperture radar images via matching of attributed scattering centers[J]. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 2017, 10 (7): 3334- 3347.
|
10 |
IBRAHIM K M, HUSSEIN K F, AMMAR A.Two-dimensional imaging and shape recognition of land buried objects through polarimetric ground penetrating radar[C]//Proc.of the 2nd Middle East Conference on Antennas and Propagation, 2012: 1-5.
|
11 |
HU J , ZHAO R , TIAN M , et al. Domain decomposition method based on integral equation for solution of scattering from very thin, conducting cavity[J]. IEEE Trans.on Antennas and Propagation, 2014, 62 (10): 5344- 4348.
|
12 |
KROGAGER E . New decomposition of the radar target scattering matrix[J]. Electronics Letters, 2002, 26 (18): 1525- 1527.
|
13 |
ZHANG Z, ZHAO M B, LI B, et al.ColorPCA: color principal feature extraction technique for color image reconstruction and recognition[C]//Proc.of the International Joint Conference on Neural Networks, 2013: 1-7.
|
14 |
CLOUDE S R , POTTIER E . A review of target decomposition theorems in radar polarimetry[J]. IEEE Trans.on Geoscience Remote Sensing, 1996, 34 (2): 498- 518.
|
15 |
GIUSTI E , MARTORELLA M , CAPRIA A . Polarimetrically-persistent-scatterer-based automatic target recognition[J]. IEEE Trans.on Geoscience and Remote Sensing, 2011, 49 (11): 4588- 4599.
|
16 |
SONG Q, XU F. Polarimetric SAR target decomposition based on sparse NMF[C]//Proc.of the Progress in Electromagnetic Research Symposium (PIERS), 2016: 4323-4325.
|
17 |
盛新庆. 电磁理论、计算、应用[M]. 北京: 高等教育出版社, 2016.
|
|
SHENG X Q . Electromagnetic theory, calculation, application[M]. Beijing: Higher Education Press, 2016.
|
18 |
KOLLIPARA A K. A physics based time-frequency analysis-a new approach to reduce multi-bounce and clutter in radar imaging[D]. VDM Verlag Dr. Müller, 2011.
|
19 |
FENG T, GUO L X, ZHANG Y. Inverse synthetic aperture radar imaging of maneuvering targets based on joint time-frequency analysis[C]//Proc.of the IEEE International Geoscience and Remote Sensing Symposium, 2016.
|
20 |
REN M Q, TIAN Y H.Radar signal cognition based time-frequency transform and high order spectra analysis[C]//Proc.of the IEEE International Conference on Signal Processing, Communications and Computing, 2017: 1-4.
|
21 |
QIAN S . Introduction to time-frequency and wavelet transforms[M]. Beijing: China Machine Press, 2005.
|
22 |
FULLER D F . Phase history decomposition for efficient scatterer classification in SAR imagery[J]. Dissertations & Theses-Gradworks, 2011, 4 (8): 921- 922.
|
23 |
SAVILLE M A , JACKSON J A , FULLER D F . Rethinking vehicle classification with wide-angle polarimetric SAR[J]. Aerospace & Electronic Systems Magazine, 2014, 29 (1): 41- 49.
|
24 |
ZHANG Q, ZENG Y S, HE Y Q, et al. Avian detection and identification with high-resolution radar[C]//Proc.of the IEEE Radar Conference, 2008: 1-6.
|
25 |
徐牧, 王雪松, 肖顺平, 等. 基于散射机理分类与方位对称性判决的极化SAR人造目标提取[J]. 国防科技大学学报, 2008, 30 (5): 68- 72.
|
|
XU M , WANG X S , XIAO S P , et al. Man-made target extraction based on scattering mechanism identification and azimuthal symmetry decision of POLSAR images[J]. Journal of National University Defense Technology, 2008, 30 (5): 68- 72.
|
26 |
吴佳妮, 陈永光, 代大海, 等. 基于人造目标极化HRRP的散射机理分类[J]. 雷达学报, 2016, 5 (2): 174- 181.
|
|
WU J N , CHEN Y G , DAI D H , et al. Scattering mechanism identification based on polarimetric HRRP of manmade target[J]. Journal of Radars, 2016, 5 (2): 174- 181.
|
27 |
RAHMAN S, ROBERTSON D. Time-frequency analysis of millimeter-wave radar micro-Doppler data from small UAVs[C]// Proc.of the Sensor Signal Processing for Defence Conference, 2017: 1-5.
|
28 |
LI J Z, JIANG Y F, XU J D. Development of RCS simulation software for electrically large complex cavities based on the secondary development of UG[C]//Proc.of the 3rd IEEE International Symposium on Microwave, Antenna, Propagation and EMC Technologies for Wireless Communications, 2009.
|
29 |
QI Y T, LI J Z, XU J D. Edge scattering evaluation of complex target based on unigraphics[C]//Proc.of the 8th International Symposium on Communication Systems, Networks & Digital Signal Processing, 2012.
|