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地震同震形变场失相干恢复方法研究
引用本文:李进田,申旭辉,张景发,罗毅.地震同震形变场失相干恢复方法研究[J].地震学报,2020,42(5):604-612.
作者姓名:李进田  申旭辉  张景发  罗毅
作者单位:中国北京 100085 应急管理部国家自然灾害防治研究院
基金项目:国家自然科学基金(41704051)和中国地震局地壳应力研究所中央级公益性科研院所基本科研业务专项(ZDJ2017-29)共同资助
摘    要:在合成孔径雷达干涉测量中,干涉相干是局部干涉条纹质量的重要评价标准,但是由于各种失相干源的影响,会出现失相干现象,而这可能会丢失重要的形变数据。本文首先利用ENVISAT ASAR的两景影像获得了2009年意大利拉奎拉MW6.3地震的带有失相干现象的同震形变场,对数据预处理后再使用移动窗口克里金法对拉奎拉地震的同震形变场进行插值处理,恢复了形变图的失相干区域,之后进一步通过正反演获得同震形变场,并与上一步的插值结果进行对比分析。结果显示,插值结果与反演结果在极震区吻合得很好,验证了移动窗口克里金插值法恢复失相干的可靠性,说明插值法可以成为实现地震同震形变场失相干恢复的一种途径。 

关 键 词:InSAR技术    2009年拉奎拉MW6.3地震    移动窗口克里金法    正反演    失相干恢复
收稿时间:2019-11-17

Decoherence recovery method of coseismic deformation field:Taking the 2009 L′Aquila MW6.3 earthquake as an example
Institution:National Institute of Natural Hazards,MEMC,Beijing 100085,China
Abstract:In SAR interferometry, interference coherence is an important evaluation criterion for the quality of local interference fringes. However, due to the influence of various sources of decoherence, decoherent phenomena appear, which may lose important deformation data. In this paper, we first obtain the coseismic deformation field of the 2009 L′Aquila MW6.3 earthquake with the two scenes of ENVISAT ASAR. After preprocessing the data, we interpolate the coseismic deformation field of the L′Aquila earthquake using the moving window Kriging method, with a result that the decoherence area of the deformation map is restored, and then the co-seismic deformation field obtained by the forward and inversion is used to compare and analyze the interpolation results with the previous step. The results show that the interpolation results are in good agreement with the inversion results in the meizoseismal area, which verifies the reliability of the moving window Kriging interpolation method to restore the decoherence, and shows that the interpolation method can be used to realize the decoherence recovery of the coseismic deformation field. Therefore, it has important reference significance for the research on the recovery of remote sensing image data with decoherence phenomenon. 
Keywords:
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