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Applied Research on InSAR and GPS Data Fusion in Deformation Monitoring

机译:在变形监测中的INSAR和GPS数据融合应用研究

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With the enrichment of land subsidence monitoring means, data fusion of multisource land subsidence data has gradually become a research hotspot. The Interferometry Synthetic Aperture Radar (InSAR) is a potential Earth observation approach, and it has been verified to have a variety of applications in measuring ground movement, urban subsidence, and landslides but similar to Global Positioning System (GPS). The InSAR observation accuracy and measurements are affected by the tropospheric delay error as well as by the Earth’s ionospheric and tropospheric layers. In order to rectify the InSAR result, there is a need to interpolate the GPS-derived tropospheric delay. Keeping in view of the above, this research study has presented an improved Inverse Distance Weighting (IIDW) interpolation method based on Inverse Distance Weighting (IDW) interpolation by using Sentinel-1 radar satellite image provided by European Space Agency (ESA) and the measured data from the Continuously Operating Reference Stations (CORS) provided by the Survey and Mapping Office of the Lands Department of Hong Kong. Furthermore, the corrected differential tropospheric delay correction is used to correct the InSAR image. The experimental results show that the correction of tropospheric delay by IIDW interpolation not only improves the accuracy of Differential Interferometry Synthetic Aperture Radar (D-InSAR) but also provides a new idea for the solution of InSAR and GPS data fusion.
机译:随着土地沉降监测手段的丰富,多源土地沉降数据的数据融合逐渐成为一个研究热点。干涉机械合成孔径雷达(INSAR)是一种潜在的地球观察方法,并且已经验证以在测量地面运动,城市沉降和山体滑坡中具有各种应用,而是与全球定位系统(GPS)类似。 Insar观察精度和测量受到对流层延迟误差以及地球的电离层和对流层的影响。为了纠正INSAR结果,需要内插GPS衍生的对流层延迟。鉴于上述情况,该研究通过使用由欧洲空间机构(ESA)提供的Sentinel-1雷达卫星图像和测量的基于逆距离加权(IDW)插值提出了一种改进的逆距离加权(IIDW)插值方法。来自香港土地部门的持续运营参考站(CORS)提供的数据。此外,校正的差分对流层延迟校正用于校正insar图像。实验结果表明,IIDW插值的对流层延迟的校正不仅提高了差动干涉机合成孔径雷达(D-Insar)的准确性,而且还为Insar和GPS数据融合的解决方案提供了新的思路。

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