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[1] Du, Z., Ge, L.*, Ng, A. H.-M., Zhu, Q., Horgan, F.G., Zhang, Q. (2020). Risk assessment for tailings dams in Brumadinho of Brazil using InSAR time series approach. Science of The Total Environment, 717, 137125.
[2] Du, Z., Ge, L.*, Ng, A. H.-M.*, Zhu, Q., Zhang, Q., Kuang, J., Dong, Y. (2019). Long-Term Subsidence in Mexico City from 2004 to 2018 revealed by Five SAR Sensors. Land Degradation and Development, 1-17.
[3] Kuang, J., Ge, L., Metternicht, G., Ng, A. H.-M., Wang, H., Zare, M., Kamranzad, F. (2019). Coseismic deformation and source model of the 12 November 2017 M W 7.3 Kermanshah Earthquake (Iran–Iraq border) investigated through DInSAR measurements. International Journal of Remote Sensing, 40, 532-554.
[4] Du, Z., Ge, L., Ng, A.H.-M., Zhang, Q. & Alamdari, M.M. (2018). Assessment of the Accuracy Among the Common Persistent Scatterer and Distributed Scatterer Based on SqueeSAR Method. IEEE Geoscience and Remote Sensing Letters, 15, 1877-1881.
[5] Du, Z., Ge, L., Ng, A.H.-M., Zhu, Q., Yang, X., Li, L. (2018). Correlating the subsidence pattern and land use in Bandung, Indonesia with both Sentinel-1/2 and ALOS-2 satellite images. International Journal of Applied Earth Observation and Geoinformation, 67, 54-68.
[6] Du, Z., Ge, L., Ng, A.H.-M., & Li, X. (2018). Investigation on mining subsidence over Appin-West Cliff Colliery using time-series Interferometry. International Journal of Remote Sensing, 39, 1528-1547.
[7] Du, Z., Ge, L., Ng, A.H.-M., Li, X., & Li, L. (2018). Monitoring of ground deformation in Liulin district, China using InSAR approaches. International Journal of Digital Earth, 11, 264-283.
[8] Du, Z., Ge, L., Ng, A.H.-M., Li, X., & Li, L. (2018). Mapping land subsidence over the eastern Beijing city using satellite radar interferometry. International Journal of Digital Earth, 11, 504-519.
[9] Ng, A.H.-M., Wang, H., Dai, Y., Pagli, C., Chen, W., Ge, L., Du, Z., Zhang, K. (2018). InSAR Reveals Land Deformation at Guangzhou and Foshan, China between 2011 and 2017 with COSMO-SkyMed Data. Remote Sensing, 10, 813.
[10] Du, Z., Ge, L., Ng, A.H.-M. & Li, X. (2017), Satellite-based Estimates of Ground Subsidence in Ordos Basin, China. Journal of Applied Geodesy, 11 9-20.
[11] Ng, A.H.-M., Ge, L., Du, Z., Wang, S., & Ma, C. (2017). Satellite radar interferometry for monitoring subsidence induced by longwall mining activity using Radarsat-2, Sentinel-1 and ALOS-2 data. International Journal of Applied Earth Observation and Geoinformation, 61, 92-103.
[12] Wang, H., Liu-Zeng, J., Ng, A.H.-M., Ge, L., Javed, F., Long, F., Aoudia, A., Feng, J., Shao, Z. (2017). Sentinel-1 observations of the 2016 Menyuan earthquake: A buried reverse event linked to the left-lateral Haiyuan fault. International Journal of Applied Earth Observation and Geoinformation, 61, 14-21.
[13] Du, Z., Ge, L., Li, X., & Ng, A.H.-M. (2016). Subsidence monitoring over the Southern Coalfield, Australia using both L-band and C-band SAR time series analysis. Remote Sensing, 8, 543.
[14] Liu, Y., Ge, L, & Ng, A.H.-M. (2016). Source Model from ALOS 2 ScanSAR of the 2015 Nepal Earthquakes. Journal of Applied Geodesy, 10, 109.
[15] Du, Z., Ge, L., Li, X., & Ng, A.H.-M. (2016). Subsidence monitoring in the Ordos basin using integrated SAR differential and time-series interferometry techniques. Remote Sensing Letters, 7, 180-189.
[16] Ng, A.H.-M., Ge, L., & Li, X. (2015). Assessments of Land Subsidence in the Gippsland Basin of Australia Using ALOS PALSAR Data. Remote Sensing of Environment, 159, 86-101.
[17] Ge, L., Ng, A.H.-M., Li, X., Abidin, H.Z., & Gumilar, I. (2014). Land subsidence characteristics of Bandung Basin as revealed by ENVISAT ASAR and ALOS PALSAR interferometry. Remote Sensing of Environment, 154, 46-60.
[18] Yan, Y.-G., Dai, H.-Y., Ge, L., Guo, J.-T., Ng, A.H.-M., & Li, X. (2014). Numerical simulation of dynamic surface deformation based on DInSAR monitoring. Transactions of Nonferrous Metals Society of China, 24, 1248-1254.
[19] Zhang, K., Ge, L., Li, X. & Ng, A.H.-M. (2013). A robust regression based linear model adjustment method for SAR interferogram stacking techniques. International Journal of Remote Sensing, 34, 5651-5665.
[20] Zhang, K., Ge, L., Li, X. & Ng, A.H.-M. (2013). Monitoring ground surface deformation over the North China Plain using coherent ALOS PALSAR differential interferograms. Journal of Geodesy, 87, 253-265.
[21] Ng, A.H.-M., Ge, L., Li, X., Abidin, H.Z., Andreas, H. & Zhang, K. (2012). Mapping land subsidence in the Jakarta City, Indonesia using persistent scatterer interferometry (PSI) technique with ALOS PALSAR. International Journal of Applied Earth Observation and Geoinformation, 18, 232 - 242.
[22] Ng, A.H.-M., Ge, L., Li, X. & Zhang, K. (2012). Monitoring ground deformation in Beijing, China with Persistent Scatterer SAR Interferometry. Journal of Geodesy, 86, 375 - 392.
[23] Ng, A.H.-M., Ge, L., Zhang, K. & Li, X. (2012). Estimating horizontal and vertical movement due to underground mining using ALOS PALSAR. Engineering Geology, 143 - 144, 18 - 27.
[24] Ng, A.H.-M., Chang, H.C., Zhang, K., Ge, L., Rizos, C. & OMURA, M. (2011). Deformation mapping in three dimensions for underground mining using InSAR - Southern highland coal field in New South Wales, Australia. International Journal of Remote Sensing, 32, 7227 - 7256.
[25] Zhang, K., Ge, L., Hu, Z., Ng, A.H.-M., Li, X. & Rizos, C. (2011). Phase Unwrapping for Very Large Interferometric Data Sets. IEEE Transactions on Geoscience and Remote Sensing, 49, 4048 - 4061.
[26] Ng, A.H.-M., Ge, L., Yan, Y., Li, X., Chang, H.C., Zhang, K. & Rizos, C. (2010). Mapping accumulated mine subsidence using small stack of SAR differential interferograms in the Southern coalfield of New South Wales, Australia. Engineering Geology, 115, 1-15.
[27] Zhang, K., Ng, A.H.-M., Ge, L., Dong, Y. & Rizos, C. (2010). Multi-path PALSAR interferometric observations of the 2008 magnitude 8.0 Wenchuan earthquake. International Journal of Remote Sensing, 31, 3449-3463.
[28] Ng, A.H.-M., Chang, H.C., Ge, L., Rizos, C. & Omura, M. (2009). Assessment of radar interferometry performance for ground subsidence monitoring due to underground mining. Earth Planets and Space, 61, 733-745.