1 |
RTCA/DO-220 . Minimum operational performance standards for airborne weather radar with forward-looking windshear capability[J]. Washington: Ratio Technical Commission for Aeronautics Incoporated, 2016,
|
2 |
李海, 宋迪, 呼延泽, 等. LFMCW体制下基于TDPC-JDL的低空风切变风速估计方法[J]. 系统工程与电子技术, 2020, 42 (7): 1504- 1509.
|
|
LI H , SONG D , HUYAN Z , et al. Wind speed estimation of low-altitude wind-shear based on TDPC-JDL under LFMCW system[J]. Systems Engineering and Electronics, 2020, 42 (7): 1504- 1509.
|
3 |
AUBRY A , DE M A , PALLOTTA L , et al. Covariance matrix estimation via geometric barycenters and its application to radar training data selection[J]. IET Radar, Sonar & Navigation, 2013, 7 (6): 600- 614.
|
4 |
REED I S , MALLETT J D , BRENNAN L E . Rapid convergence rate in adaptive arrays[J]. IEEE Trans.on Aerospace and Electronic Systems, 1974, 10 (6): 853- 863.
|
5 |
PECKHAM C D , HAIMOVICH A M , AYOUB T F , et al. Reduced-rank STAP performance analysis[J]. IEEE Trans.on Aerospace & Electronic Systems, 2000, 36 (2): 664- 676.
|
6 |
LI H, ZHOU M, WU R B, et al. Wind speed estimation of low-altitude wind-shear based on multiple Doppler channels joint adaptive processing[C]//Proc. of the IEEE International Conference on Acoustics, Speech and Signal Processing, 2016: 3116-3120.
|
7 |
马泽强, 王希勤, 刘一民, 等. 基于稀疏恢复的空时二维自适应处理技术研究现状[J]. 雷达学报, 2014, 3 (2): 217- 228.
|
|
MA Z Q , WANG X Q , LIU Y M , et al. An overview on sparse recovery-based STAP[J]. Journal of Radars, 2014, 3 (2): 217- 228.
|
8 |
段克清, 袁华东, 许红, 等. 稀疏恢复空时自适应处理技术研究综述[J]. 电子学报, 2019, 47 (3): 748- 756.
|
|
DUAN K Q , YUAN H D , XU H , et al. An overview on sparse recovery space-time adaptive processing technique[J]. Acta Electronica Sinica, 2019, 47 (3): 748- 756.
|
9 |
DONOHO D L , ELAD M , TEMLYAKOV V N . Stable recovery of sparse overcomplete resentalations in the presence of noise[J]. IEEE Trans.on Information Theory, 2005, 52 (1): 6- 18.
|
10 |
BAI G H , TAO R , ZHAO J J , et al. Parameter-searched OMP method for eliminating basis mismatch in space-time spectrum estimation[J]. Signal Processing, 2017, 138 (3): 11- 15.
|
11 |
GORODNITSKY I F , RAO B D . Sparse signal reconstruction from limited data using FOCUSS: a re-weighted minimum norm algorithm[J]. IEEE Trans.on Signal Processing, 2002, 45 (3): 600- 616.
|
12 |
KLEMM R . Principle of space-time adaptive processing[M]. 3rd ed. London: Institution of Engineering and Teohnology Publisher, 2006.
|
13 |
姚晖. 分布式信号源参数估计技术研究[D]. 郑州: 解放军信息工程大学, 2013.
|
|
YAO H. Research on parameter estimation method for distri-buted sources[D]. Zhengzhou: Information Engineering University of PLA, 2013.
|
14 |
王彤. 机载雷达简易STAP方法及其应用[D]. 西安: 西安电子科技大学, 2001.
|
|
WANG T. Study of simplified STAP and its application to airborne radar[D]. Xi'an: Xidian University, 2001.
|
15 |
YANG T Y , ZHANG L J , JIN R , et al. A simple homotopy proximal mapping algorithm for compressive sensing[J]. Machine Learning, 2019, 108 (6): 1019- 1056.
doi: 10.1007/s10994-018-5772-7
|
16 |
孙珂, 张颢, 李刚, 等. 基于杂波谱稀疏恢复的空时自适应处理[J]. 电子学报, 2011, 39 (6): 1389- 1393.
|
|
SUN K , ZHANG H , LI G , et al. STAP via sparse recovery of clutter spectrum[J]. Acta Electronica Sinica, 2011, 39 (6): 1389- 1393.
|
17 |
WANG G B , WEI X , YU B Z , et al. An efficient proximal block coordinate homotopy method for large-scale sparse least squares problems[J]. SIAM Journal on Entific Computing, 2020, 42 (1): 395- 423.
doi: 10.1137/19M1243828
|
18 |
YANG Z C , LI X , WANG H Q , et al. Sparsity-based space-time adaptive processing using complex-valued homotopy technique for airborne radar[J]. Signal Processing Letters, 2014, 8 (5): 552- 564.
|
19 |
阳召成. 基于稀疏性的空时自适应处理理论和方法[D]. 长沙: 国防科学技术大学, 2013.
|
|
YANG Z C. Theory and methods of sparsity-based space-time adaptive processing[D]. Changsha: National University of Defense Technology, 2013.
|
20 |
PETERSEN K , PEDERSEN M . The matrix cookbook[M]. Lyngby, Denmark: Technical University of Denmark Publisher, 2012.
|
21 |
DAI J C , XU W , ZHANG J L , et al. Homotopy algorithm for L1-norm minimisation problems[J]. Signal Processing Letters, 2015, 9 (1): 1- 9.
|
22 |
YU C X , ZHAO J T , WANG Y F , et al. Sparse diffraction imaging method using an adaptive reweighting homotopy algorithm[J]. Journal of Geophysics & Engineering, 2017, 14 (1): 26- 40.
|
23 |
ZHANG Z , XU Y , YANG J , et al. A survey of sparse representation: algorithms and applications[J]. IEEE Access, 2015, 3 (5): 490- 530.
|
24 |
ASIF M S , ROMBERG J . Sparse recovery of streaming signals using L1-homotopy[J]. IEEE Trans.on Signal Processing, 2014, 62 (16): 4209- 4223.
doi: 10.1109/TSP.2014.2328981
|