24.2.2.8.4 Landslide Susceptibility Using SAR

Chapter Contents (Back)
Landslide Susceptibility. Subsidence. Susceptibility. SAR.

Rauste, Y., Lateh, H.B., Jefriza,, Mohd, M.W.I.W.[M. W. I. Wan], Lonnqvist, A., Hame, T.,
TerraSAR-X Data in Cut Slope Soil Stability Monitoring in Malaysia,
GeoRS(50), No. 9, September 2012, pp. 3354-3363.
IEEE DOI 1209
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del Soldato, M.[Matteo], Solari, L.[Lorenzo], Poggi, F.[Francesco], Raspini, F.[Federico], Tomás, R.[Roberto], Fanti, R.[Riccardo], Casagli, N.[Nicola],
Landslide-Induced Damage Probability Estimation Coupling InSAR and Field Survey Data by Fragility Curves,
RS(11), No. 12, 2019, pp. xx-yy.
DOI Link 1907
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Chen, L.Q.[Li-Quan], Zhao, C.Y.[Chao-Ying], Kang, Y.[Ya], Chen, H.Y.[Heng-Yi], Yang, C.S.[Cheng-Sheng], Li, B.[Bin], Liu, Y.Y.[Yuan-Yuan], Xing, A.[Aiguo],
Pre-Event Deformation and Failure Mechanism Analysis of the Pusa Landslide, China with Multi-Sensor SAR Imagery,
RS(12), No. 5, 2020, pp. xx-yy.
DOI Link 2003
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Nefeslioglu, H.A.[Hakan A.], Tavus, B.[Beste], Er, M.[Melahat], Ertugrul, G.[Gamze], Ozdemir, A.[Aybuke], Kaya, A.[Alperen], Kocaman, S.[Sultan],
Integration of an InSAR and ANN for Sinkhole Susceptibility Mapping: A Case Study from Kirikkale-Delice (Turkey),
IJGI(10), No. 3, 2021, pp. xx-yy.
DOI Link 2104
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Luo, S.Y.[Shi-Yu], Sarabandi, K.[Kamal], Tong, L.[Ling], Pierce, L.E.[Leland E.],
Probability Assessment of Rainfall-Induced Landslides Based on Safety Factors Using Soil Moisture Estimation From SAR Images,
GeoRS(59), No. 7, July 2021, pp. 5579-5597.
IEEE DOI 2106
Landslides, Synthetic aperture radar, Stability analysis, Soil moisture, Data models, Vegetation mapping, Radar polarimetry, synthetic aperture radar (SAR) BibRef

Armas, I.[Iuliana], Gheorghe, M.[Mihaela], Silvax, G.C.[George Catalin],
Shallow Landslides Physically Based Susceptibility Assessment Improvement Using InSAR. Case Study: Carpathian and Subcarpathian Prahova Valley, Romania,
RS(13), No. 12, 2021, pp. xx-yy.
DOI Link 2106
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Luo, S.R.[Shu-Ran], Feng, G.C.[Guang-Cai], Xiong, Z.Q.[Zhi-Qiang], Wang, H.Y.[Hai-Yan], Zhao, Y.G.[Ying-Gang], Li, K.F.[Kai-Feng], Deng, K.L.[Kai-Liang], Wang, Y.X.[Yue-Xin],
An Improved Method for Automatic Identification and Assessment of Potential Geohazards Based on MT-InSAR Measurements,
RS(13), No. 17, 2021, pp. xx-yy.
DOI Link 2109
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Moretto, S.[Serena], Bozzano, F.[Francesca], Mazzanti, P.[Paolo],
The Role of Satellite InSAR for Landslide Forecasting: Limitations and Openings,
RS(13), No. 18, 2021, pp. xx-yy.
DOI Link 2109
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Hussain, M.A.[Muhammad Afaq], Chen, Z.L.[Zhan-Long], Wang, R.[Run], Shoaib, M.[Muhammad],
PS-InSAR-Based Validated Landslide Susceptibility Mapping along Karakorum Highway, Pakistan,
RS(13), No. 20, 2021, pp. xx-yy.
DOI Link 2110
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Ali, N.[Nafees], Chen, J.[Jian], Fu, X.D.[Xiao-Dong], Ali, R.[Rashid], Hussain, M.A.[Muhammad Afaq], Daud, H.[Hamza], Hussain, J.[Javid], Altalbe, A.[Ali],
Integrating Machine Learning Ensembles for Landslide Susceptibility Mapping in Northern Pakistan,
RS(16), No. 6, 2024, pp. 988.
DOI Link 2403
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Ullah, I.[Ibad], Chen, Z.L.[Zhan-Long], Hussain, M.A.[Muhammad Afaq], Shah, S.U.[Safeer Ullah], Ali, N.[Nafees],
Hybrid Machine Learning and SBAS-InSAR Integration for Landslide Susceptibility Mapping Along the Balakot-Naran Route, Pakistan,
RS(17), No. 20, 2025, pp. 3464.
DOI Link 2510
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Liang, J.T.[Jing-Tao], Dong, J.H.[Ji-Hong], Zhang, S.[Su], Zhao, C.[Cong], Liu, B.[Bin], Yang, L.[Lei], Yan, S.W.[Sheng-Wu], Ma, X.B.[Xiao-Bo],
Discussion on InSAR Identification Effectivity of Potential Landslides and Factors That Influence the Effectivity,
RS(14), No. 8, 2022, pp. xx-yy.
DOI Link 2205
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Xun, Z.Y.[Zhang-Yuan], Zhao, C.Y.[Chao-Ying], Kang, Y.[Ya], Liu, X.J.[Xiao-Jie], Liu, Y.Y.[Yuan-Yuan], Du, C.Y.[Cheng-Yan],
Automatic Extraction of Potential Landslides by Integrating an Optical Remote Sensing Image with an InSAR-Derived Deformation Map,
RS(14), No. 11, 2022, pp. xx-yy.
DOI Link 2206
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Orellana, F.[Felipe], Moreno, M.[Marcos], Yáñez, G.[Gonzalo],
High-Resolution Deformation Monitoring from DInSAR: Implications for Geohazards and Ground Stability in the Metropolitan Area of Santiago, Chile,
RS(14), No. 23, 2022, pp. xx-yy.
DOI Link 2212
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Liu, M.[Meiyu], Xu, B.[Bing], Li, Z.W.[Zhi-Wei], Mao, W.X.[Wen-Xiang], Zhu, Y.[Yan], Hou, J.X.[Jing-Xin], Liu, W.Z.[Wei-Zheng],
Landslide Susceptibility Zoning in Yunnan Province Based on SBAS-InSAR Technology and a Random Forest Model,
RS(15), No. 11, 2023, pp. 2864.
DOI Link 2306
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Wang, Z.H.[Zhi-Heng], Jia, Y.[Yang], Li, S.F.[Sheng-Fu], Zhang, R.[Rui], Xu, B.Z.[Bin-Zhi], Sun, X.P.[Xiao-Peng],
Landslide-Hazard-Avoiding Highway Alignment Selection in Mountainous Regions Based on SAR Images and High-Spatial-Resolution Precipitation Datasets: A Case Study in Southwestern China,
RS(16), No. 7, 2024, pp. 1303.
DOI Link 2404
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Li, L.[Lu], Wang, J.[Jili], Zhang, H.[Heng], Zhang, Y.[Yi], Xiang, W.[Wei], Fu, Y.Z.[Yuan-Zhao],
Refined InSAR Mapping Based on Improved Tropospheric Delay Correction Method for Automatic Identification of Wide-Area Potential Landslides,
RS(16), No. 12, 2024, pp. 2187.
DOI Link 2406
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Zhang, R.Q.[Rui-Qi], Zhang, L.[Lele], Fang, Z.[Zhice], Oguchi, T.[Takashi], Merghadi, A.[Abdelaziz], Fu, Z.J.[Zi-Jin], Dong, A.[Aonan], Dou, J.[Jie],
Interferometric Synthetic Aperture Radar (InSAR)-Based Absence Sampling for Machine-Learning-Based Landslide Susceptibility Mapping: The Three Gorges Reservoir Area, China,
RS(16), No. 13, 2024, pp. 2394.
DOI Link 2407
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Li, P.F.[Peng-Fei], Wang, H.[Huini], Li, H.L.[Hong-Li], Ni, Z.X.[Zi-Xuan], Deng, H.X.[Hong-Xing], Sui, H.G.[Hai-Gang], Xu, G.L.[Gui-Lin],
Refined Landslide Susceptibility Mapping Considering Land Use Changes and InSAR Deformation: A Case Study of Yulin City, Guangxi,
RS(16), No. 16, 2024, pp. 3016.
DOI Link 2408
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Wu, X.L.[Xue-Ling], Qi, X.S.[Xiao-Shuai], Peng, B.[Bo], Wang, J.Y.[Jun-Yang],
Optimized Landslide Susceptibility Mapping and Modelling Using the SBAS-InSAR Coupling Model,
RS(16), No. 16, 2024, pp. 2873.
DOI Link 2408
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Vaka, D.S.[Divya Sekhar], Yaragunda, V.R.[Vishnuvardhan Reddy], Perdikou, S.[Skevi], Papanicolaou, A.[Alexandra],
InSAR Integrated Machine Learning Approach for Landslide Susceptibility Mapping in California,
RS(16), No. 19, 2024, pp. 3574.
DOI Link 2410
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Alatza, S.[Stavroula], Apostolakis, A.[Alexis], Loupasakis, C.[Constantinos], Kontoes, C.[Charalampos], Kokkalidou, M.[Martha], Bartsotas, N.S.[Nikolaos S.], Christopoulos, G.[Georgios],
Harnessing InSAR and Machine Learning for Geotectonic Unit-Specific Landslide Susceptibility Mapping: The Case of Western Greece,
RS(17), No. 7, 2025, pp. 1161.
DOI Link 2504
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Zheng, W.B.[Wen-Bo], Fan, W.[Wen], Cao, Y.B.[Yan-Bo], Nan, Y.L.[Ya-Lin], Jing, P.X.[Peng-Xu],
Landslide Hazard Assessment Under Record-Breaking Extreme Rainfall: Integration of SBAS-InSAR and Machine Learning Models,
RS(17), No. 13, 2025, pp. 2265.
DOI Link 2507
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Yu, Y.[Yang], Zhu, C.M.[Chang-Ming], Gulayozov, M.[Majid], Li, J.L.[Jun-Li], Chen, B.Q.[Bing-Qian], Shen, Q.[Qian], Zhou, H.[Hao], Xiao, W.[Wen], Niyazov, J.[Jafar], Gulakhmadov, A.[Aminjon],
Monitoring and Assessment of Slope Hazards Susceptibility Around Sarez Lake in the Pamir by Integrating Small Baseline Subset InSAR with an Improved SVM Algorithm,
RS(17), No. 13, 2025, pp. 2300.
DOI Link 2507
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Li, Z.J.[Zhou-Jiang], Xiang, J.M.[Jian-Ming], Zhuo, G.C.[Guan-Chen], Zhang, H.Y.[Hong-Yuan], Dai, K.[Keren], Shi, X.L.[Xian-Lin],
Dynamic Landslide Susceptibility Assessment in the Yalong River Alpine Gorge Region Integrating InSAR-Derived Deformation Velocity,
RS(17), No. 18, 2025, pp. 3210.
DOI Link 2510
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Zhang, Z.[Zirui], Hu, Q.F.[Qing-Feng], Fang, H.R.[Hao-Ran], Liu, W.K.[Wen-Kai], Chen, S.K.[Shou-Kai], Wu, Q.F.[Qi-Fan], Wang, P.[Peng], Lu, W.Q.[Wei-Qiang], Yin, W.B.[Wei-Bo], Ma, T.J.[Tang-Jing], Feng, R.M.[Rui-Min],
Landslide Susceptibility Assessment in Zunyi City Incorporating MT-InSAR-Based Physical Constraints and Explainable Analysis,
RS(18), No. 3, 2026, pp. 515.
DOI Link 2602
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Wang, H.F.[Hong-Fei], Deng, C.H.[Chu-Han], Zhang, Z.Y.[Zi-You], Jiang, Z.K.[Zhe-Kai], Wei, Q.[Qi], Yi, W.J.[Wei-Jie], Chen, T.[Tao], Ma, J.W.[Jun-Wei],
Dynamic Landslide Susceptibility Assessment Integrating SBAS-InSAR and Interpretable Machine Learning: A Case Study of the Baihetan Reservoir Area, Southwest China,
RS(18), No. 4, 2026, pp. 578.
DOI Link 2603
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Li, L.[Lu], Cheng, H.Y.[Hong-Yan], Guo, Y.H.[Yu-Hua], Liu, S.Q.[Shang-Qiang], Yin, J.[Jianyong], Wang, J.[Jili],
An Optimized Heterogeneous Ensemble Learning Algorithm for InSAR Landslide Susceptibility Mapping Based on the Adaptive Sampling Strategy,
RS(18), No. 12, 2026, pp. 1985.
DOI Link 2606
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Chen, X.Q.[Xiao-Qiang], Yao, X.[Xin], Zhou, Z.K.[Zhen-Kai], Tian, X.[Xuwen], Tao, T.[Tao], Li, Q.Y.[Qi-Yu], Wen, Y.[Yi], Song, G.Y.[Guang-Yao],
Mining-Induced Deformation and Slope Stability in Steep Mountainous Areas Based on InSAR Monitoring and Rock Movement Theory: A Case Study from Southwestern China,
RS(18), No. 12, 2026, pp. 2008.
DOI Link 2606
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Yang, H.M.[He-Ming], Liu, W.H.[Wen-Hui], Liu, Y.B.[Ya-Bin],
Landslide Susceptibility Assessment in a Complex Mountain Basin Transition Zone by Integrating Mamba and SBAS-InSAR Deformation Evidence: A Case Study of the Xining Basin, China,
RS(18), No. 13, 2026, pp. 2170.
DOI Link 2607
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Sun, D.[Dong], Wu, J.B.[Jian-Bo], Yang, T.[Tao], Hu, X.[Xiao], Luo, X.H.[Xiao-Hui],
Scale-Sensitive and Confounding-Audited SBAS-InSAR Evidence Representation for Landslide Susceptibility Mapping,
RS(18), No. 14, 2026, pp. 2386.
DOI Link 2608
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Chen, H.[Honglai], Zhou, C.[Chao], Li, Y.[Yi], Dou, J.[Jie], Chen, Y.[Yi], Song, Y.[Yan],
Geometry-Aware InSAR Feedback Purification Sampling for Negative Sample Selection in Landslide Susceptibility Assessment: A Case Study in the Shigatse Region,
RS(18), No. 15, 2026, pp. 2591.
DOI Link 2608
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Han, X.D.[Xu-Dong], Song, W.[Wei], Pan, S.H.[Shu-Hua], Cao, C.[Chen], Bao, Y.D.[Yi-Ding],
Landslide Susceptibility Mapping Constrained by InSAR-Derived Deformation Using Multi-Source Data Integration,
RS(18), No. 15, 2026, pp. 2540.
DOI Link 2608
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Mohsenifard, M.[Masoud], Magagi, R.[Ramata], Goïta, K.[Kalifa],
Use of PSInSAR for Long-Term Surface Displacement Monitoring as a Complement to the Official Landslide Susceptibility Map in the Saguenay-Lac-Saint-Jean Region, Quebec,
RS(18), No. 15, 2026, pp. 2492.
DOI Link 2608
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Yan, Y.Q.[Yi-Qiu], Dou, A.[Aixia], Guo, C.B.[Chang-Bao], Li, C.H.[Cai-Hong], Yuan, X.[Xinxia], Yuan, H.[Hao],
Landslide Susceptibility Modeling Constrained by Multi-Scale Polygon Sampling and InSAR Deformation for High-Relief Mountainous Areas: A Case Study in the Upper Jinsha River, Southwest China,
RS(18), No. 16, 2026, pp. 2788.
DOI Link 2608
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Chapter on Cartography, Aerial Images, Buildings, Roads, Terrain, Forests, Trees, ATR continues in
Landslide Risk Assessment .


Last update:Sep 21, 2026 at 18:29:27