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首页> 外文期刊>Geophysical Research Letters >Toward mapping surface deformation in three dimensions using InSAR - art. no. L01607
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Toward mapping surface deformation in three dimensions using InSAR - art. no. L01607

机译:使用InSAR向三维表面变形映射-art。没有。 L01607

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One of the limitations of deformation measurements made with interferometric synthetic aperture radar (InSAR) is that an interferogram only measures one component of the surface deformation-in the satellite's line of sight. We investigate strategies for mapping surface deformation in three dimensions by using multiple interferograms, with different imaging geometries. Geometries for both current and future missions are evaluated, and their abilities to resolve the displacement vector are compared. The north component is always the most difficult to determine using data from near-polar orbiting satellites. However, a satellite with an inclination of about 60degrees/120degrees would enable all three components to be well resolved. We attempt to resolve the 3D displacements for the 23 October 2002 Nenana Mountain (Alaska) Earthquake. The north component's error is much larger than the signal, but proxies for eastward and vertical motion can be determined if the north component is assumed negligible. Inversions of hypothetical coseismic interferograms demonstrate that earthquake model parameters can be well recovered from two interferograms, acquired on ascending and descending tracks. [References: 11]
机译:干涉式合成孔径雷达(InSAR)进行变形测量的局限性之一是,干涉图只能测量卫星视线内表面变形的一个分量。我们研究通过使用具有不同成像几何形状的多个干涉图在三个维度上映射表面变形的策略。评估了当前和未来任务的几何形状,并比较了它们解决位移矢量的能力。使用近极轨道卫星的数据始终很难确定北向分量。但是,如果卫星的倾斜度约为60度/ 120度,则可以很好地解析所有三个分量。我们试图解决2002年10月23日Nenana山(阿拉斯加)地震的3D位移。北部分量的误差远大于信号,但是如果假定北部分量可以忽略,则可以确定向东和垂直运动的代理。假设同震干涉图的反演表明,可以从在上升和下降轨道上采集的两个干涉图很好地恢复地震模型参数。 [参考:11]

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