[1] GABRIEL A K,GOLDSTEIN R M,ZEBKER H A. Mapping small elevation changes over large areas:differential radar interferometry[J].Journal of Geophysical Research: Solid Earth,1989,94(B7): 9183-9191. [2] GOLDSTEIN R M,ENGELHARDT H,KAMB B,et al.Satellite radar interferometry for monitoring ice sheet motion: application to an Antarctic ice stream[J].Science,1993,262(5139): 1525-1530. [3] 刘国祥,刘文熙,黄丁发.InSAR技术及其应用中的若干问题[J].测绘通报,2001(8): 10-12. [4] BERARDINO P,FORNARO G,LANARI R,et al.A new algorithm for surface deformation monitoring based on small baseline differential SAR interferograms[J].IEEE Transactions on Geoscience and Remote Sensing,2002,40(11): 2375-2383. [5] FERRETTI A,PRATI C,ROCCA F.Permanent scatterers in SAR interferometry[J].IEEE Transactions on Geoscience and Remote Sensing,2001,39(1): 8-20. [6] FERRETTI A,FUMAGALLI A,NOVALI F,et al.A new algorithm for processing interferometric data-stacks: SqueeSAR[J].IEEE Transactions on Geoscience and Remote Sensing,2011,49(9): 3460-3470. [7] ZHANG Z J,WANG C,WANG M M,et al.Surface deformation monitoring in Zhengzhou city from 2014 to 2016 using time-series InSAR[J].Remote Sensing,2018,10(11): 1731-1747. [8] 蒋弥,丁晓利,李志伟.时序InSAR同质样本选取算法研究[J].地球物理学报,2018,61(12): 4767-4776. [9] 张倩,马悦,周洪月,等.基于InSAR技术的天津局部地表沉降特征分析[J].测绘通报,2024(2): 74-79. [10] 汪宝存,李芳芳,潘登,等.PS-InSAR技术在郑州地面沉降调查中的应用[J].测绘科学,2013,38(5): 43-45. [11] YANG Honglei,PENG Junhuan,WANG Baocun,et al.Ground deformation monitoring of Zhengzhou city from 2012 to 2013 using an improved IPTA[J].Natural Hazards,2016,80(1): 1-17. [12] 管力,唐伟,戴华阳,等.采用SBAS-InSAR技术监测郑州城区地面沉降[J].北京测绘,2019,33(4): 462-467. [13] 王义梅,罗小军,于冰,等.郑州地面沉降InSAR监测[J].测绘科学,2019,44(9): 100-106. [14] 叶勇超,闫超德,罗先学,等.时序InSAR郑州地铁沿线地面沉降分析[J].遥感学报,2022,26(7): 1342-1353. [15] ZHUO Zijun,Lü Dunyu,MENG Shuran,et al.Factors driving surface deformations in plain area of eastern Zhengzhou city,China[J].Journal of Groundwater Science and Engineering,2023,11(4): 347-364. [16] YU Chen,LI Zhenhong,PENNA N T.Interferometric synthetic aperture radar atmospheric correction using a GPS-based iterative tropospheric decomposition model[J].Remote Sensing of Environment,2018,204: 109-121. [17] YU Chen,LI Zhenhong,PENNA N T,et al.Generic atmospheric correction model for interferometric synthetic aperture radar observations[J].Journal of Geophysical Research (Solid Earth),2018,123(10): 9202-9222. [18] 蒋弥,丁晓利,何秀凤,等.基于快速分布式目标探测的时序雷达干涉测量方法: 以Lost Hills油藏区为例[J].地球物理学报,2016,59(10): 3592-3603. [19] FORNARO G,VERDE S,REALE D,et al.CAESAR: an approach based on covariance matrix decomposition to improve multibaseline-multitemporal interferometric SAR processing[J].IEEE Transactions on Geoscience and Remote Sensing,2015,53(4): 2050-2065. [20] CAO Ning,LEE H,JUNG H C.A phase-decomposition-based PSInSAR processing method[J].IEEE Transactions on Geoscience and Remote Sensing,2016,54(2): 1074-1090. [21] 赵超英,王宝行.SAR干涉图降噪的稳健协方差矩阵分解法[J].测绘学报,2019,48(1): 24-33. |