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第 50 卷第 9 期 武帅莹等:一种基于 GNSS 和机器学习的 InSAR 大气改正方法 1875
lays from a Combination of GNSS and InSAR[J]. SAR 对流层延迟估计方法评估[J]. 武汉大学学报
Navigation, 2020, 67(4): 823-842. (信息科学版), 2020, 45(6): 879-887.
[20] ROUET-LEDUC B, JOLIVET R, DALAISON LI Peng, GAO Mengyao, LI Zhenhong, et al.
M, et al. Autonomous Extraction of Millimeter- Evaluation of Wide-Swath InSAR Tropospheric De⁃
Scale Deformation in InSAR Time Series Using lay Estimation Methods over the Altyn Tagh Fault
Deep Learning[J]. Nature Communications, 2021, [J]. Geomatics and Information Science of Wuhan
12: 6480. University, 2020, 45(6): 879-887.
[21] HOOPER A, BEKAERT D, SPAANS K, et al. [28] 李振洪, 宋闯, 余琛, 等 . 卫星雷达遥感在滑坡灾
Recent Advances in SAR Interferometry Time Se⁃ 害探测和监测中的应用: 挑战与对策[J]. 武汉大
ries Analysis for Measuring Crustal Deformation[J]. 学学报(信息科学版), 2019, 44(7): 967-979.
Tectonophysics, 2012, 514: 1-13. LI Zhenhong, SONG Chuang, YU Chen, et al. Ap⁃
[22] 崔喜爱, 曾琪明, 童庆禧, 等 . 重轨星载 InSAR 测 plication of Satellite Radar Remote Sensing to Land⁃
量 中 的 大 气 校 正 方 法 综 述[J]. 遥 感 技 术 与 应 用 , slide Detection and Monitoring: Challenges and So⁃
2014, 29(1): 9-17. lutions[J]. Geomatics and Information Science of
CUI Xi ai, ZENG Qiming, TONG Qingxi, et al. Wuhan University, 2019, 44(7): 967-979.
Overview of the Atmospheric Correction Methods in [29] COSTANTINI M, FERRETTI A, MINATI F,
Repeat-Pass InSAR Measurements [J]. Remote et al. Analysis of Surface Deformations over the Whole
Sensing Technology and Application, 2014, 29(1): Italian Territory by Interferometric Processing of
9-17. ERS, Envisat and COSMO-SkyMed Radar Data
[23] 李达, 邓喀中, 高晓雄, 等 . 基于 SBAS-InSAR 的 [J]. Remote Sensing of Environment, 2017, 202:
矿区地表沉降监测与分析[J]. 武汉大学学报(信息 250-275.
科学版), 2018, 43(10): 1531-1537. [30] 徐甫, 王政, 李振洪, 等 . 复杂环境下的地基雷达
LI Da, DENG Kazhong, GAO Xiaoxiong, et al. 大气改正方法[J]. 武汉大学学报(信息科学版),
Monitoring and Analysis of Surface Subsidence in 2023, 48(12): 2069-2081.
Mining Area Based on SBAS-InSAR[J]. Geomatics XU Fu, WANG Zheng, LI Zhenhong, et al. An
and Information Science of Wuhan University, Atmospheric Correction Method for Ground-Based
2018, 43(10): 1531-1537. Radar Under Complex Environment[J]. Geomatics
[24] 何永红, 靳鹏伟, 舒敏 . 基于多尺度相关性分析的 and Information Science of Wuhan University,
InSAR 对流层延迟误差改正算法[J]. 地球信息科 2023, 48(12): 2069-2081.
学学报, 2020, 22(9): 1878-1886. [31] JOLIVET R, AGRAM P S, LIN N Y, et al. Im⁃
HE Yonghong, JIN Pengwei, SHU Min. InSAR proving InSAR Geodesy Using Global Atmospheric
Tropospheric Delay Error Correction Algorithm Models[J]. Journal of Geophysical Research: Solid
Based on Multi-scale Correlation Analysis[J]. Jour⁃ Earth, 2014, 119(3): 2324-2341.
nal of Geo-Information Science, 2020, 22(9): [32] 占文俊, 李志伟, 韦建超, 等 . 一种 InSAR 大气相
1878-1886. 位 建 模 与 估 计 方 法[J]. 地 球 物 理 学 报 , 2015, 58
[25] 姜宇, 单新建, 宋小刚, 等 . InSAR 大气误差改正 (7): 2320-2329.
及其在活动断层形变监测中的应用[J]. 地震学报, ZHAN Wenjun, LI Zhiwei, WEI Jianchao, et al. A
2017, 39(3): 374-385. Strategy for Modeling and Estimating Atmospheric
JIANG Yu, SHAN Xinjian, SONG Xiaogang, et Phase of SAR Interferogram[J]. Chinese Journal of
al. Atmospheric Correction for InSAR and Its Appli⁃ Geophysics, 2015, 58(7): 2320-2329.
cation in Mapping Ground Motion Due to Interseis⁃ [33] MURRAY K D, BEKAERT D P S, LOHMAN R
mic Strain Accumulation[J]. Acta Seismologica Si⁃ B. Tropospheric Corrections for InSAR: Statistical
nica, 2017, 39(3): 374-385. Assessments and Applications to the Central United
[26] ZHU M, ZENG Q M, JIAO J. Quantitative Assess⁃ States and Mexico[J]. Remote Sensing of Environ⁃
ment to the Impact of InSAR Ionospheric and Tropo⁃ ment, 2019, 232: 111326.
spheric Corrections on Source Parameter Modelling: [34] MURRAY K D, LOHMAN R B, BEKAERT D P
Application to the 4th Nuclear Test, North Korea S. Cluster-Based Empirical Tropospheric Correc⁃
[J]. Geophysical Journal International, 2020, 224 tions Applied to InSAR Time Series Analysis[J].
(1): 86-99. IEEE Transactions on Geoscience and Remote
[27] 李鹏, 高梦瑶, 李振洪, 等 . 阿尔金断裂带宽幅 In⁃ Sensing , 2021, 59(3): 2204-2212.

