A Novel Near-Real-Time GB-InSAR Slope Deformation Monitoring Method

Author:

Su Yuhan,Yang HongleiORCID,Peng Junhuan,Liu Youfeng,Zhao Binbin,Shi MengyaoORCID

Abstract

In the past two decades, ground-based synthetic aperture radars (GB-SARs) have developed rapidly, providing a large amount of SAR data in minutes or even seconds. However, the real-time processing of big data is a challenge for the existing GB-SAR interferometry (GB-InSAR) technology. In this paper, we propose a near-real-time GB-InSAR method for monitoring slope surface deformation. The proposed method uses short baseline SAR data to generate interferograms to improve temporal coherence and reduce atmospheric interference. Then, based on the wrapped phase of each interferogram, a network method is used to estimate and remove systematic errors (such as atmospheric delay, radar center shift error, etc.). After the phase unwrapping, a least squares estimator is used for the overall solution to obtain the initial deformation parameters. When new data are added, a sequential estimator is used to combine the previous processing results and dynamically update the deformation parameters. Sequential estimators could avoid repeated calculations and improve data processing efficiency. Finally, the method is validated with the measured data. The results show that the average deviation between the proposed method and the overall estimation was less than 0.01 mm, which could be considered a consistent estimation accuracy. In addition, the calculation time of the sequential estimator was less sensitive than the total amount of data, and the time-consuming growth rate of each additional period of data was about 1/10 of the overall calculation. In summary, the new method could quickly and effectively obtain high-precision surface deformation information and meet the needs of near-real-time slope deformation monitoring.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Open Fund of State Key Laboratory of Coal Resources and Safe Mining

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

Reference32 articles.

1. Landslide monitoring by ground-based radar interferometry: A field test in Valdarno (Italy);Pieraccini;Int. J. Remote Sens.,2010

2. Tarchi, D., Rudolf, H., Luzi, G., Chiarantini, L., Coppo, P., and Sieber, A.J. SAR interferometry for structural changes detection: A demonstration test on a dam. Proceedings of the IEEE 1999 International Geoscience and Remote Sensing Symposium. IGARSS’99 (Cat. No.99CH36293).

3. Monitoring, prediction, and early warning using ground-based radar interferometry;Casagli;Landslides,2010

4. Early Warning Monitoring of Natural and Engineered Slopes with Ground-Based Synthetic-Aperture Radar;Atzeni;Rock Mech. Rock Eng.,2014

5. Xiao, T., Huang, W., Deng, Y., Tian, W., and Sha, Y. Long-Term and Emergency Monitoring of Zhongbao Landslide Using Space-Borne and Ground-Based InSAR. Remote Sens., 2021. 13.

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