A comparison of atmospheric disturbance correction techniques in GBInSAR

Xueqin Wang, J. Yue, Shanming Qiu, Z. Qiu, Shun Yue
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Abstract

Ground-Based Synthetic Aperture Radar interferometry (GBInSAR) has generated movement with sub-millimeter accuracy in line-of-sight(LOS) direction, and it can provide movement images with high spatial and temporal resolution. Though the fluctuation of atmospheric environment affects interferometric phases strongly, GBInSAR can be used for deformation measurement after removing the interference phase and transforming the displacement from LOS direction to radial and tangential. This paper provides a comparison of different atmospheric disturbance correction techniques. We made an experiment of deformation measurement about Geheyan Dam on Qingjiang to estimate the movement caused by atmosphere. In the experiment, displacement information of the dam was obtained by IBIS-L system and atmospheric parameters (humidity, temperature and barometric pressure) were collected from the weather station located on the dam. The collection process lasted for several days. By processing and analysis the data of a whole day without equipment malfunction, the results show an atmospheric delay of 15mm when the system located 1000m away from the target dam and atmospheric correction should be reinforced somehow for most Ground-Based InSAR applications. Then three correction algorithms are presented in order to weaken the influence from atmospheric disturbance. The techniques respectively based on the atmospheric parameters, Ground Control Points(GCP) and distribution model are quantitively compared using a reference dataset gotten by inverted perpendicular lines. And the accuracy of each method are finally drawn. It could be seen that the atmospheric disturbance be weaken by the three methods with reliable results and error of the technique based on distribution model was less than 2mm with the highest reliability. This analysis is followed by a discussion of the advantages and the limitations of each technique.
GBInSAR大气扰动校正技术的比较
地面合成孔径雷达干涉测量技术(GBInSAR)在视距(LOS)方向上产生亚毫米级精度的运动,能够提供高时空分辨率的运动图像。虽然大气环境的波动对干涉相位影响较大,但在去除干涉相位,将位移从LOS方向转化为径向和切向后,GBInSAR可以用于变形测量。本文对不同的大气扰动校正技术进行了比较。本文对清江隔河岩大坝进行了变形测量试验,以估计大气对大坝的影响。实验采用IBIS-L系统获取坝体位移信息,坝体气象站采集坝体大气参数(湿度、温度、气压)。收集过程持续了几天。通过对设备无故障情况下全天数据的处理和分析,结果表明,当系统位于距离目标大坝1000m时,大气延迟为15mm,对于大多数地基InSAR应用,应以一定方式加强大气校正。针对大气扰动的影响,提出了三种校正算法。利用倒垂线获取的参考数据,对基于大气参数、地面控制点(GCP)和分布模型的技术进行了定量比较。最后得出了各种方法的精度。可以看出,三种方法均能减弱大气扰动,结果可靠,基于分布模型的方法误差小于2mm,可靠性最高。在此分析之后,将讨论每种技术的优点和局限性。
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