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A time-series SAR observation of surface deformation at the southern end of the San Andreas Fault Zone

机译:圣安德烈亚斯断层带南端的地表变形的时间序列SAR观测

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The San Andreas Fault (SAF) is a continental transform fault that exists as a consequence of the relative motion of the Pacific and North American Plates. Differential SAR interferometry (DInSAR) particularly with a time-series analysis is an effective tool for long-term monitoring of the SAF. Radar interferometric phase, however, contains unwanted noises originated from atmosphere as well as observation system. For studying characteristics of interferometric phase at the southern end of the SAF zone, ERS-1/2 data, acquired from 1992 to 1999, and ENVISAT data, from 2003 to the present, were utilized. Troposphere interference and orbit error were the most significant sources of errors. Since the phase noise highly correlates with topographic elevation, a simulated interferogram from topographic elevation was utilized to compensate for the tropospheric signal delay. After subtracting the simulated phase from each DInSAR interferogram, more reliable results were obtained. These results are supported by comparison with the geodetic GPS data set.
机译:圣安德烈亚斯断层(SAF)是大陆性变质断层,是太平洋板块和北美板块相对运动的结果。差分SAR干涉测量法(DInSAR),尤其是具有时间序列分析的方法,是对SAF进行长期监视的有效工具。但是,雷达干涉相包含来自大气和观测系统的有害噪声。为了研究SAF区南端的干涉相特征,使用了1992年至1999年获得的ERS-1 / 2数据和2003年至今的ENVISAT数据。对流层干扰和轨道误差是最主要的误差来源。由于相位噪声与地形高度高度相关,因此利用来自地形高度的模拟干涉图来补偿对流层信号延迟。从每个DInSAR干涉图中减去模拟相位后,可获得更可靠的结果。通过与大地GPS数据集进行比较来支持这些结果。

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