| 1 |
KHATTAK A, CHAN P W, CHEN F, et al. Interpretable ensemble imbalance learning strategies for the risk assessment of severe-low-level wind shear based on LiDAR and PIREPs[J]. Risk Analysis, 2024, 44 (5): 1084- 1102.
doi: 10.1111/risa.14215
|
| 2 |
LIN C Y, ZHANG K J, CHEN X T, et al. Overview of low-level wind shear characteristics over Chinese mainland[J]. Atmosphere, 2021, 12 (5): 628.
doi: 10.3390/atmos12050628
|
| 3 |
NIU H T, MA C B, SHE Z Y, et al. A hybrid methodology for knowledge organization and application of Chinese civil aviation regulations from mission safety support perspective[J]. Proceedings of the Institution of Mechanical Engineers, Part G. Journal of aerospace engineering, 2023 (15): 3524- 3559.
|
| 4 |
LI H, XIONG Y, CHEN Y T. Simulation of complex meteorological target echoes for airborne dual-polarization weather radar based on invariant imbedding T-matrix[J]. IEEE Trans. on Geoscience and Remote Sensing, 2024, 62
|
| 5 |
LI H, XIONG Y, ZHANG B X, et al. Simulation of precipitation echoes from airborne dual-polarization weather radar based on a fast algorithm for invariant imbedding T-matrix[J]. IEEE Trans. on Radar Systems, 2025, 3, 135- 154.
doi: 10.1109/TRS.2024.3516745
|
| 6 |
MAILLOUX R J. Phased array antenna handbook[M]. Boston: Artech House, 1994.
|
| 7 |
ROZEL M, BROUARD P, ORIOT H. Polarimetric adaptive processing and eigenvalue detector for counter UAVs radar[J]. NATO STO Review, 2022: SET-273.
|
| 8 |
WANG J P, WANG J, ZHU Y, et al. A novel clutter suppression method based on sparse Bayesian learning for airborne passive bistatic radar with contaminated reference signal[J]. Sensors, 2021, 21 (20): 6736.
doi: 10.3390/s21206736
|
| 9 |
LI J A, LI Z Y, YANG Q, et al. Efficient matrix sparse recovery STAP method based on kronecker transform for BiSAR sea clutter suppression[J]. IEEE Trans. on Geoscience and Remote Sensing, 2024, 62
|
| 10 |
ZHENG Z M, LAI J Z, ZHANG Q Q, et al. Gridless sparse recovery-based wind speed estimation for wind-shear detection using airborne phased array radar[J]. Radio Engineering, 2024, 33 (4): 494- 501.
|
| 11 |
LI H, CHEN Y T, FENG K H, et al. Low-altitude wind shear wind speed estimation method based on KASPICE-STAP[J]. Sensors, 2022, 23 (1): 54.
doi: 10.3390/s23010054
|
| 12 |
LI H, FENG K H, CHENG W J, et al. Estimation of low-altitude wind-shear wind speed based on DDD-EFA under aircraft yawing[C]// Proc. of the CIE International Conference on Radar, 2021: 3106−3111.
|
| 13 |
LI H, ZHOU M, GUO Q L, et al. Compressive sensing-based wind speed estimation for low-altitude wind-shear with airborne phased array radar[J]. Multidimensional Systems and Signal Processing, 2018, 29, 719- 732.
doi: 10.1007/s11045-016-0448-6
|
| 14 |
LI H, YANG W H, HUYAN Z, et al. Low-altitude wind-shear wind speed estimation based on improved auxiliary channel[C]//Proc. of the CIE International Conference on Radar, 2021: 3112−3116.
|
| 15 |
李海, 朱玥琪, 郭景瑞. 基于KA-SRCN-pSTAP的低空风切变风速估计方法[J]. 雷达科学与技术, 2024, 22 (3): 255- 264.
doi: 10.3969/j.issn.1672-2337.2024.03.003
|
|
LI H, ZHU Y Q, GUO J R. Wind speed estimation of low-altitude wind shear based on KA-SRCN-pSTAP[J]. Radar Science and Technology, 2024, 22 (3): 255- 264.
doi: 10.3969/j.issn.1672-2337.2024.03.003
|
| 16 |
WANG H Y, YAO Z C, YANG J, et al. A novel beamforming algorithm for GNSS receivers with dual-polarized sensitive arrays in the joint space-time-polarization domain[J]. Sensors, 2018, 18 (12): 4506.
doi: 10.3390/s18124506
|
| 17 |
LI H, WANG J, FAN Y, et al. High-fidelity inhomogeneous ground clutter simulation of airborne phased array PD radar aided by digital elevation model and digital land classification data[J]. Sensors, 2018, 18 (9): 2925.
doi: 10.3390/s18092925
|
| 18 |
NOVAK L M, BURL M C. Optimal speckle reduction in polarimetric SAR imagery[J]. IEEE Trans. on Aerospace and Electronic Systems, 1990, 26 (2): 293- 305.
doi: 10.1109/7.53442
|
| 19 |
EOM H J, BOERNER W M. Statistical properties of the phase difference between two orthogonally polarized SAR signals[J]. IEEE Trans. on Geoscience and Remote Sensing, 1991, 29 (1): 182- 184.
doi: 10.1109/36.103312
|
| 20 |
KIM Y S, SCHVARTZMAN D, PALMER R D, et al. Phased array weather radar architectures for Doppler estimation with space-time processing[J]. IEEE Trans. on Radar Systems, 2024, 2: 725−738.
|
| 21 |
NOVAK L M, SECHTIN M B, CARDULLO M J. Studies of target detection algorithms that use polarimetric radar data[J]. IEEE Trans. on Aerospace and Electronic Systems, 1989, 25 (2): 150- 165.
doi: 10.1109/7.18677
|
| 22 |
NOVAK L M, BURL M C, IRVING W W. Optimal polarimetric processing for enhanced target detection[J]. IEEE Trans. on Aerospace and Electronic Systems, 1993, 29 (1): 234- 244.
doi: 10.1109/7.249129
|
| 23 |
SHA M H, MAO E K, ZHANG K. Polarization-space joint mainlobe jamming countermeasure technique based on divided dimensions[J]. Journal of Systems Engineering and Electronics, 2022, 33(3): 594−599.
|
| 24 |
ZHANG S Y, LU X Y, YU J T, et al. Clutter suppression for radar via deep joint sparse recovery network[J]. IEEE Geoscience and Remote Sensing Letters, 2024, 21
|
| 25 |
ROMANO J P , WOLF M. Resurrecting weighted least squares[J]. Journal of Econometrics, 2017, 197(1): 1−19.
|
| 26 |
肖浩, 王彤, 文才, 等. 一种稳健的机载面阵雷达非均匀杂波抑制方法[J]. 电子与信息学报, 2021, 43 (1): 138- 144.
|
|
XIAO H, WANG T, WEN C, et al. A robust heterogeneous clutter suppression method for airborne planar array radar[J]. Journal of Electronics & Information Technology, 2021, 43 (1): 138- 144.
|
| 27 |
沈强, 饶彬. 基于全极化通道融合的目标进动周期提取方法[J]. 太赫兹科学与电子信息学报, 2024, 22 (4): 437- 444.
doi: 10.11805/TKYDA2022092
|
|
SHEN Q, RAO B. A precession period extraction method for space target based on full polarization channel fusion preprocess[J]. Journal of Terahertz Science and Electronic Information Technology, 2024, 22 (4): 437- 444.
doi: 10.11805/TKYDA2022092
|
| 28 |
李海, 王杰. 基于CMCAP的低空风切变风速估计方法[J]. 系统工程与电子技术, 2019, 41(3): 529−533.
|
|
LI H, WANG J. Low-altitude wind-shear wind speed estimation based on CMCAP[J]. Systems Engineering and Electronics, 2019, 41(3): 529−533.
|
| 29 |
EVANS J , TURNBULL D. Development of an automated windshear detection system using Doppler weather radar[J]. Proceedings of the IEEE, 1989, 77 (11): 1661- 1673.
doi: 10.1109/5.47729
|
| 30 |
李海, 张志宁, 周晔, 等. 基于双极化通道数据融合的低空风切变风速估计方法[J]. 火控雷达技术, 2022, 51 (3): 1- 8.
doi: 10.19472/j.cnki.1008-8652.2022.03.001
|
|
LI H, ZHANG Z N, ZHOU Y, et al. A wind speed estimation method for low-level wind shear based on dual-polarization channel data fusion[J]. Fire Control Radar Technology, 2022, 51 (3): 1- 8.
doi: 10.19472/j.cnki.1008-8652.2022.03.001
|