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1. Jackson, J. A., Mehl, J. P., Neuendorf, K. K. E. and Institute, A. G. (2005). "Glossary of Geology." Springer Science & Business Media. Alexandria, Virginia. 2. Angornai, S., Memarian, H., Shariat Panahi, M. and Bolourchi, M. J. (2016). "Dynamic Modeling of Land Subsidence in Tehran Plain." Scientific Quarterly Journal of Geosciences. 25, 97, 211-220. 3. Karimi, m., Ghanbari, A. and Amiri, s. (2013). "Measurement of the level of risk of land subsidence in No.18 urban residence area of Tehran." Spatial Planning. 3, 1, 37-56. 4. Cabral-Cano, E., Osmanoglu, B., Dixon, T., Wdowinski, S., Demets, C., Cigna, F. and D'Iaz-Molina, O. (2010). "Subsidence and fault hazard maps using PSI and permanent GPS networks in central Mexico." IAHS-AISH publication. 339, 255-259. 5. Sun, Y., Jiewei, Z., Fei, Q., Quanzhong, L., Cong, L., Zhaowei, Y. and and Peng, J. (2024). "Spatio-temporal evolution of land subsidence and susceptibility zonation of associated ground fissures in the urban area of loess plateau: a case in Xianyang city, China." Geomatics, Natural Hazards and Risk. 15, 1, 2341181. [ DOI:10.1080/19475705.2024.2341181] 6. Massonnet, D., Rossi, M., Carmona, C., Adragna, F., Peltzer, G., Feigl, K. and Rabaute, T. (1993). "The displacement field of the Landers earthquake mapped by radar interferometry." Nature. 364, 6433, 138-142. [ DOI:10.1038/364138a0] 7. Mehrabi, H. (2017). "Intrinsic Analysis of the Earth Crustal Deformation by InSAR Technology and Meshless Numerical Methods", Ph.D Thesis, K.N. Toosi University of Technology. 8. Tarighat, F., Foroughnia, F. and Perissin, D. (2021). "Monitoring of Power Towers' Movement Using Persistent Scatterer SAR Interferometry in South West of Tehran." Remote Sensing. 13, 3, 407. [ DOI:10.3390/rs13030407] 9. Geng, H., Peng, J., Wen, G., Zhou, F., Zhe, M., Wu, X. and Dai, S. (2022). "Monitoring of Surface Deformation of Transmission Tower Based on SBAS-InSAR Technology." Proc. 2022 IEEE 5th International Conference on Electronics Technology (ICET), (Eds), . [ DOI:10.1109/ICET55676.2022.9824022] 10. Shami, S., Azar, M. K., Nilfouroushan, F., Salimi, M. and Reshadi, M. A. M. (2022). "Assessments of ground subsidence along the railway in the Kashan plain, Iran, using Sentinel-1 data and NSBAS algorithm." International Journal of Applied Earth Observation and Geoinformation. 112, 102898. [ DOI:10.1016/j.jag.2022.102898] 11. Amerian, Y. and Vosooghi, B. (2012). "Subsidence Monitoring in Mashhad and Neyshabour area based on Change of Curvature Analysis Method Using Displacement Field from GPS Observations." Scientific Quarterly Journal of Geosciences. 21, 82, 133-138. 12. Tirmizi, O. and Khan, S. D. (2023). "Factors of Subsidence in Katy, Texas, USA." Remote Sensing. 15, 18, 4424. [ DOI:10.3390/rs15184424] 13. Tirmizi, O., Khan, S. D., Mirzaee, S. and Fattahi, H. (2023). "Hazard Potential in Southern Pakistan: A Study on the Subsidence and Neotectonics of Karachi and Surrounding Areas." Remote Sensing. 15, 5, 1290. [ DOI:10.3390/rs15051290] 14. Najafian, D., Ghasemzadeh, F., Naghdi, S. and Ghadami, H. (2019). "Assessment of the status of subsidence in the plains of Alborz Province." Proc. First Conference of Alborz Engineering Opportunities & Challenges, (Eds), Kharazmi University, Karaj, Iran. 15. Ranjbar, M. and Jaafari, N. (2009). "Investigating the effective factors in the subsidence of the Eshtehard plain." Geography. 6, 19, 155-166. 16. Rezaei, K. (2021). "Soil erosion and land subsidence effects in the vicinity of power transport lines in Eshtehard Plain using sedimentology and Geoelectric studies." Applied Sedimentology. 8, 16, 28-44. 17. Mehrabi, H. and Voosoghi, B. (2015). "Recursive moving least squares." Engineering Analysis with Boundary Elements. 58, 119-128. [ DOI:10.1016/j.enganabound.2015.04.001] 18. Agency, E. S."Copernicus Sentinel-1".Available online: https://directory.eoportal.org/satellite-missions/copernicus-sentinel-1 (accessed on 2025). 19. Morishita, Y., Lazecky, M., Wright, T. J., Weiss, J. R., Elliott, J. R. and Hooper, A. (2020). "LiCSBAS: An Open-Source InSAR Time Series Analysis Package Integrated with the LiCSAR Automated Sentinel-1 InSAR Processor." Remote Sensing. 12, 3, 424. [ DOI:10.3390/rs12030424] 20. Fialko, Y., Simons, M. and Agnew, D. (2001). "The complete (3-D) surface displacement field in the epicentral area of the 1999 M7.1 Hector Mine Earthquake, California, from space geodetic observations." Geophysical Research Letters. 28, 16, 3063-3066. [ DOI:10.1029/2001GL013174] 21. Motagh, M., Shamshiri, R., Haghshenas Haghighi, M., Wetzel, H.-U., Akbari, B., Nahavandchi, H., Roessner, S. and Arabi, S. (2017). "Quantifying groundwater exploitation induced subsidence in the Rafsanjan plain, southeastern Iran, using InSAR time-series and in situ measurements." Engineering Geology. 218, 134-151. [ DOI:10.1016/j.enggeo.2017.01.011] 22. Cabral-Cano, E., Solano-Rojas, D., Oliver-Cabrera, T., Wdowinski, S., Chaussard, E., Salazar-Tlaczani, L., Cigna, F., DeMets, C. and Pacheco-Martínez, J. (2015). "Satellite geodesy tools for ground subsidence and associated shallow faulting hazard assessment in central Mexico." Proc. IAHS. 372, 255-260. [ DOI:10.5194/piahs-372-255-2015] 23. Fernández-Torres, E., Cabral-Cano, E., Solano-Rojas, D., Havazli, E. and Salazar-Tlaczani, L. (2020). "Land Subsidence risk maps and InSAR based angular distortion structural vulnerability assessment: an example in Mexico City." Proc. IAHS. 382, 583-587. [ DOI:10.5194/piahs-382-583-2020] 24. Awasthi, S., Jain, K., Bhattacharjee, S., Gupta, V., Varade, D., Singh, H., Narayan, A. B. and Budillon, A. (2022). "Analyzing urbanization induced groundwater stress and land deformation using time-series Sentinel-1 datasets applying PSInSAR approach." Sci Total Environ. 844, 157103. [ DOI:10.1016/j.scitotenv.2022.157103] 25. Hu, J., Motagh, M., Guo, J., Haghighi, M. H., Li, T., Qin, F. and Wu, W. (2022). "Inferring subsidence characteristics in Wuhan (China) through multitemporal InSAR and hydrogeological analysis." Engineering Geology. 297, 106530. [ DOI:10.1016/j.enggeo.2022.106530] 26. [26] Belytschko, T., Krongauz, Y., Organ, D., Fleming, M. and Krysl, P. (1996). "Meshless methods: An overview and recent developments." Computer Methods in Applied Mechanics and Engineering. 139, 1, 3-47. [ DOI:10.1016/S0045-7825(96)01078-X] 27. Mehrabi, H. and Tashayo, B. (2019). "Spatial Data Interpolation Through Recursive Solution of Moving Least Squares." Journal of Geomatics Science and Technology. 9, 2, 15-27. 28. Simon, D. (2006). "Least squares estimation." in Optimal State Estimation, Simon, D., Eds., John Wiley & Sons, Inc., Hoboken, New Jersey, 79-105. [ DOI:10.1002/0470045345.ch3] 29. Motagh, M., Walter, T. R., Sharifi, M. A., Fielding, E., Schenk, A., Anderssohn, J. and Zschau, J. (2008). "Land subsidence in Iran caused by widespread water reservoir overexploitation." Geophysical Research Letters. 35, 16, . [ DOI:10.1029/2008GL033814] 30. Kratzsch, H. (1983). "Mining Subsidence Engineering." Springer. Berlin, Heidelberg. [ DOI:10.1007/978-3-642-81923-0]
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