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Measuring sub-metric displacements induced by earthquakes from satellite images : application tot he Landers (California 1992) earthquake

机译:测量来自卫星地震诱导的子度量位移图像:应用程序TOT HE LANDERS(加利福尼亚1992年)地震

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Ground displacement resulting from the Landers earthquake is computed from a pair of SPOT panchromatic images as described in ~1. Other sources of geometrical deformations (offsets) resulting from local topogrpahy, artifiacts of the imagery, variations in the satellite attitude during the acquisition process are compensated at the sub-pixel scale. Images are then resampled to be in a cartographic projection using a sinc interpolator.Measuremnets are achieved from a dedicated sub-pixel correlator in the Fourier domain which provides a 2D offset map. Residual biases are compensated from calibration. Amplitude of the remaining high frequency noise is about 0.01 pixel (rms). Most of the low frequency noise can be compensated from modeling. Measurements enables the cartography of the Landers fault with an accuracy of 80 meters. Displacement on the fault is extracted with an accuracy better than 80 meters. Comparison with a model derived from GPS and other geodetic data validates our results. Preliminary resutls derived from images with a metric resolution provide far more accurate measurements.
机译:由着陆器地震产生的地面位移由如〜1中所述的一对点心图像计算。由本地TopoGRPAHY,图像的ARTIFIACT的几何变形(偏移)来源,在采集过程中卫星姿态的变化以子像素刻度补偿。然后将图像重新采样以使用SINC Interpolator.MeasuremeS.MeasuremeNets从傅里叶域中的专用子像素相关器实现,该傅立叶域提供了2D偏移图。残留偏差从校准补偿。剩余高频噪声的幅度约为0.01像素(RMS)。大多数低频噪声可以从建模中得到补偿。测量使着陆器故障的制图可达,精度为80米。通过精度优于80米,提取故障的位移。与来自GPS和其他大地测量数据的模型的比较验证了我们的结果。从具有度量分辨率的图像衍生的初步重构提供了更准确的测量。

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