1- بهزاد فلاحپور، م.، دهقانی، ح.، جبار رشیدی، ع.، شیخی، ع.، 1395. شبیهسازی و تحلیل اثر زاویه فرود و شکل اهداف در تصاویر SAR. فصلنامه علمی-پژوهشی اطلاعات جغرافیایی، 25(98): 129-140.
2- Arief, R., Dyatmika, H. S., & Ali, S. (2020). A fusion of digital elevation model based on interferometry SAR technique from ascending and descending path in urban area. In IOP Conference Series: Earth and Environmental Science (Vol. 500, No. 1, p. 012035). IOP Publishing.
3- Awasthi, S., Jain, K., Mishra, V., & Kumar, A. (2020). An approach for multi-dimensional land subsidence velocity estimation using time-series Sentinel-1 SAR datasets by applying persistent scatterer interferometry technique. Geocarto International, 1-32.
4- Che, M., & Gamba, P. (2020). Urban Change Pattern Exploration Using Fine-resolution SAR of Ascending and Descending Orbits. In 2020 IEEE Radar Conference (RadarConf20) (pp. 1-4). IEEE.
5- Del Soldato, M., Solari, L., Raspini, F., Bianchini, S., Ciampalini, A., Montalti, R., ... & Casagli, N. (2019). Monitoring Ground Instabilities Using SAR Satellite Data: A Practical Approach. ISPRS International Journal of Geo-Information, 8(7), 307.
6- DeLancey, E. R., Brisco, B., Canisius, F., Murnaghan, K., Beaudette, L., & Kariyeva, J. (2019). The Synergistic Use of RADARSAT-2 Ascending and Descending Images to Improve Surface Water Detection Accuracy in Alberta, Canada. Canadian Journal of Remote Sensing, 45(6), 759-769.
7- Dumitru, C. O., & Datcu, M. (2013). Information content of very high resolution SAR images: Study of feature extraction and imaging parameters. IEEE Transactions on Geoscience and Remote Sensing, 51(8), 4591-4610.
8- El Kamali, M., Abuelgasim, A., Papoutsis, I., Loupasakis, C., & Kontoes, C. (2020). A reasoned bibliography on SAR interferometry applications and outlook on big interferometric data processing. Remote Sensing Applications: Society and Environment, 100358.
9- Ferretti, A. (2014). Satellite InSAR data: reservoir monitoring from space. EAGE publications.
10- Fielding, E. J., Liu, Z., Stephenson, O. L., Zhong, M., Liang, C., Moore, A., ... & Simons, M. (2020). Surface Deformation Related to the 2019 M w 7.1 and 6.4 Ridgecrest Earthquakes in California from GPS, SAR Interferometry, and SAR Pixel Offsets. Seismological Research Letters.
11- Foumelis, M. (2018). Vector-based approach for combining ascending and descending persistent scatterers interferometric point measurements. Geocarto International, 33(1), 38-52.
12- Fujiyama, K., & Shimada, M. (2019). Monitoring MT. Shinnmoe’s Crater Activity Using the Timeseries Palsar-2 Interferometry. In IGARSS 2019-2019 IEEE International Geoscience and Remote Sensing Symposium (pp. 1729-1732). IEEE.
13- Garioud, A., Valero, S., Giordano, S., & Mallet, C. (2020, June). On the joint exploitation of optical and SAR imagery for grassland monitoring. In The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XLIII-B3-2020.
14- Lauknes, T. R. (2011). Rockslide mapping in Norway by means of interferometric SAR time series analysis.
15- Liu, X., Zhao, C., Zhang, Q., Yang, C., & Zhu, W. (2020). Heifangtai loess landslide type and failure mode analysis with ascending and descending Spot-mode TerraSAR-X datasets. Landslides, 17(1), 205-215.
16- Mora, O., Ordoqui, P., Iglesias, R., & Blanco, P. (2016). Earthquake rapid mapping using ascending and descending Sentinel-1 TOPSAR interferograms. Procedia Computer Science, 100, 1135-1140.
17- Ohki, M., Tadono, T., Itoh, T., Ishii, K., Yamanokuchi, T., Watanabe, M., & Shimada, M. (2019). Flood area detection using PALSAR-2 amplitude and coherence data: The case of the 2015 heavy rainfall in Japan. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 12(7), 2288-2298.
18- Samsonov, S., & Baryakh, A. (2020). Estimation of Deformation Intensity above a Flooded Potash Mine Near Berezniki (Perm Krai, Russia) with SAR Interferometry. Remote Sensing, 12(19), 3215.
19- Sarychikhina, O., Palacios, D. G., Argote, L. A. D., & Ortega, A. G. (2020). Application of satellite SAR interferometry for the detection and monitoring of landslides along the Tijuana-Ensenada Scenic Highway, Baja California, Mexico. Journal of South American Earth Sciences, 103030.
20- Sentinel Online, overview of missions, https://sentinel.esa.int/web/sentinel/missions/sentinel-1/overview, Last modified: 2020.
21- Susaki, J., Kusakabe, T., & Anahara, T. (2020). Estimating 3d Land Subsidence from Multi-Temporal SAR Images and Gnss Data Using Weighted Least Squares. ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 3, 165-172.
22- Takada, Y., & Motono, G. (2020). Spatiotemporal behavior of a large-scale landslide at Mt. Onnebetsu-dake, Japan, detected by three L-band SAR satellites. Earth, Planets and Space, 72(1), 1-18.
23- Tripathi, G., Pandey, A. C., Parida, B. R., & Kumar, A. (2020). Flood Inundation Mapping and Impact Assessment Using Multi-Temporal Optical and SAR Satellite Data: a Case Study of 2017 Flood in Darbhanga District, Bihar, India. Water Resources Management, 1-22.
24- Wang, Z., Liu, J., Wang, J., Wang, L., Luo, M., Wang, Z., ... & Li, H. (2020). Resolving and Analyzing Landfast Ice Deformation by InSAR Technology Combined with Sentinel-1A Ascending and Descending Orbits Data. Sensors, 20(22), 6561.