An improved active layer thickness retrieval method over Qinghai-Tibet permafrost using InSAR technology: With emphasis on two-dimensional deformation and unfrozen water
Author:
Publisher
Elsevier BV
Subject
Management, Monitoring, Policy and Law,Computers in Earth Sciences,Earth-Surface Processes,Global and Planetary Change
Reference41 articles.
1. Active layer thickness retrieval over the Qinghai-Tibet Plateau from 2000 to 2020 based on InSAR-measured subsidence and multilayer soil moisture;Chang;Int. Arch. Photogramm. Remote Sens. Spat. Inf. Sci. - ISPRS Arch.,2021
2. Chen, R.H., Michaelides, R.J., Sullivan, T.D., Parsekian, A.D., Zebker, H.A., Moghaddam, M., Schaefer, K.M., 2020. Joint retrieval of soil moisture and permafrost active layer thickness using L-band InSAR and P-band PolSAR. In: IGARSS 2020-2020 IEEE International Geoscience and Remote Sensing Symposium. IEEE, pp. 4606–4609.
3. Magnitudes and patterns of large-scale permafrost ground deformation revealed by Sentinel-1 InSAR on the central Qinghai-Tibet Plateau;Chen;Remote Sens. Environ.,2022
4. Characteristic, changes and impacts of permafrost on Qinghai-Tibet Plateau;Cheng;Chin. Sci. Bull.,2019
5. Preliminary study on InSAR-based uplift or subsidence monitoring and stability evaluation of ground surface in the permafrost zone of the Qinghai-Tibet engineering corridor, China;Du;Remote Sens.,2023
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