| 1 | 刘喜玲.机载端射阵列天线的研究[D].西安:西安电子科技大学, 2015. | 
																													
																							|  | LIU X L. Research of airborne end-fire antenna array[D]. Xi'an: Xidian University, 2015. | 
																													
																							| 2 | 常仁, 王小谟, 刘姜玲, 等.  数字端射阵列栅瓣抑制研究[J]. 中国电子科学研究院学报, 2014, 9 (3): 287- 290. doi: 10.3969/j.issn.1673-5692.2014.03.012
 | 
																													
																							|  | CHANG R ,  WANG X M ,  LIU J L , et al.  The research of grating lobe suppression of digital end-fire antenna array[J]. Journal of China Academy of Electronic and Information Technology, 2014, 9 (3): 287- 290. doi: 10.3969/j.issn.1673-5692.2014.03.012
 | 
																													
																							| 3 | 曹佳.端射阵列天线机理与应用研究[D].北京:北京理工大学, 2015. | 
																													
																							|  | CAO J. Research on the mechanism and application of end-fire antenna array[D]. Beijing: Beijing Institute of Technology, 2015. | 
																													
																							| 4 | WANG J, LEE Y J, WANG J H. Two-dimensional multi-beam end-fire antenna array of magneto-electric dipoles with horizontal polarization[C]//Proc.of the IEEE International Symposium on Antennas and Propagation & USNC/URSI National Radio Science Meeting, 2017: 2565-2566. | 
																													
																							| 5 | DEBARD A, CLEMENTE A, DELAVEAUD C, et al. Analysis of superdirective huygens source based end-fire arrays[C]// Proc.of the 11th European Conference on Antennas and Propagation, 2017: 2983-2987. | 
																													
																							| 6 | WANG P ,  SHEN Z X .  End-fire surface wave antenna with metasurface coating[J]. IEEE Access, 2018, 6, 23778- 23785. doi: 10.1109/ACCESS.2018.2827199
 | 
																													
																							| 7 | KREYENKAMP O ,  KLEMM R .  Doppler compensation in forward -looking STAP radar[J]. IET Radar, Sonar and Navigation, 2001, 148 (1): 596- 608. | 
																													
																							| 8 | HIMED B, ZHANG Y H, HAJJARI A. STAP with angle-Doppler compensation for bistatic airborne radar[C]//Proc.of the IEEE Radar Conference, 2002: 311-317. | 
																													
																							| 9 | JAFFER A, HO P T. Adaptive angle-Doppler compensation in airborne phased radar for planar array[C]//Proc.of the 13th IEEE International Conference on Signal Processing, 2016: 1585-1588. | 
																													
																							| 10 | 贾逢德, 何子述, 李军, 等.  机载雷达平面阵前视杂波距离依赖性补偿[J]. 现代雷达, 2018, 40 (7): 36- 40. | 
																													
																							|  | JIA F D ,  HE Z S ,  LI J , et al.  Range dependence compensation of forward-looking clutter for airborne radar planar array[J]. Modern Radar, 2018, 40 (7): 36- 40. | 
																													
																							| 11 | 王娟, 王彤, 吴建新.  非正侧阵机载雷达杂波谱迭代自适应配准方法[J]. 系统工程与电子技术, 2017, 39 (4): 742- 747. | 
																													
																							|  | WANG J ,  WANG T ,  WU J X .  Registration-based compensation using iterative adaptive approach in non-side-looking airborne radar[J]. Systems Engineering and Electronics, 2017, 39 (4): 742- 747. | 
																													
																							| 12 | VARADARAJAN V ,  KROLIK J L .  Joint space-time interpolation for distorted linear and bistatic array geometries[J]. IEEE Trans.on Signal Processing, 2006, 56 (3): 848- 860. | 
																													
																							| 13 | MENG X ,  WANG T ,  WU J , et al.  Short-range clutter suppression for airborne radar by utilizing prefiltering in elevation[J]. IEEE Geoscience & Remote Sensing Letters, 2009, 6 (2): 268- 272. | 
																													
																							| 14 | 段克清, 谢文冲, 陈辉, 等.  基于俯仰维信息的机载雷达非均匀杂波抑制方法[J]. 电子学报, 2011, 39 (3): 585- 590. | 
																													
																							|  | DUAN K Q ,  XIE W C ,  CHEN H , et al.  Elevation based methods for nonhomogeneous clutter suppression in airborne radar[J]. Acta Electronica Sinica, 2011, 39 (3): 585- 590. | 
																													
																							| 15 | NICKEL U ,  CHAUMETTE E ,  LARZABAL P .  Estimation of extended target using the generalized monopulse estimator: extension to a mixed target model[J]. IEEE Trans.on Aerospace and Electronic Systems, 2013, 49 (3): 2084- 2096. doi: 10.1109/TAES.2013.6558043
 | 
																													
																							| 16 | WU R B ,  SU Z G ,  WANG L .  Space-time adaptive monopulse processing for airborne radar in non-homogeneous environments[J]. AEU International Journal of Electronics and Communications, 2011, 65 (5): 258- 264. | 
																													
																							| 17 | NICKEL U .  Performance analysis of space-time adaptive monopulse[J]. Signal Processing, 2004, 84 (9): 1561- 1579. doi: 10.1016/j.sigpro.2004.05.025
 | 
																													
																							| 18 | FANTE R L .  Synthesis of adaptive monopulse patterns[J]. IEEE Trans.on Antennas and Propagation, 1999, 47 (5): 773- 774. doi: 10.1109/8.774129
 | 
																													
																							| 19 | 陈功, 谢文冲, 王永良.  基于空时联合约束的机载雷达STAP单脉冲角度估计方法[J]. 电子学报, 2015, 43 (3): 489- 495. doi: 10.3969/j.issn.0372-2112.2015.03.011
 | 
																													
																							|  | CHEN G ,  XIE W C ,  WANG Y L .  Space-time adaptive monopulse angle estimation approach for airborne radar based on space-time joint constraints[J]. Acta Electronica Sinica, 2015, 43 (3): 489- 495. doi: 10.3969/j.issn.0372-2112.2015.03.011
 |