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Monitoring Water Surface and Level of a Reservoir Using Different Remote Sensing Approaches and Comparison with Dam Displacements Evaluated via GNSS 원문보기

Remote sensing, v.10 no.2, 2018년, pp.71 -   

Pipitone, Claudia (Department of Civil, Environmental, Aerospace, Materials Engineering (DICAM), Università) ,  Maltese, Antonino (degli Studi di Palermo, 90128 Palermo, Italy) ,  Dardanelli, Gino (Department of Civil, Environmental, Aerospace, Materials Engineering (DICAM), Università) ,  Lo Brutto, Mauro (degli Studi di Palermo, 90128 Palermo, Italy) ,  La Loggia, Goffredo (Department of Civil, Environmental, Aerospace, Materials Engineering (DICAM), Università)

Abstract AI-Helper 아이콘AI-Helper

Remote sensing allowed monitoring the reservoir water level by estimating its surface extension. Surface extension has been estimated using different approaches, employing both optical (Landsat 5 TM, Landsat 7 ETM+ SLC-Off, Landsat 8 OLI-TIRS and ASTER images) and Synthetic Aperture Radar (SAR) imag...

참고문헌 (37)

  1. Modelling of deformations during construction of a large earth dam in The La Grande Complex, Canada Tech. Sci. 2004 7 109 

  2. Drummond, P. (2010, January 11-16). Combining Cors Networks, Automated Observations and Processing, for Network Rtk Integrity Analysis and Deformation Monitoring. Proceedings of the 15th FIG Congress Facing the Challenges-Building the Capacity, Sydney, Australia. 

  3. Analysis of dam deformation measurements with the robust and non-robust methods Sci. Res. Essays 2010 5 1770 

  4. Duffy, M., Hill, C., Whitaker, C., Chrzanowski, A., Lutes, J., and Bastin, G. (2001, January 19-22). An automated and integrated monitoring program for Diamond Valley Lake in California. Proceedings of the 10th FIG International Symposium on Deformation Measurements, Orange, CA, USA. 

  5. Tarsisius Aris, S., Kabul Basah, S., Fakrurazzi, D., Adin, S., Adhi, D., and Susilo, A. (2012, January 6-10). Design and installation for Dam Monitoring Using Multi sensors: A Case Study at Sermo Dam, Yogyakarta Province, Indonesia. Proceedings of the FIG Working Week 2012, Knowing to Manage the Territory, Protect the Environment, Evaluate the Cultural Heritage, Rome, Italy. 

  6. Bayrak Verifying Pressure of Water on Dams, a Case Study Sensors 2008 10.3390/s8095376 8 5376 

  7. Kalkan Geodetic deformation monitoring of Ataturk Dam in Turkey Arab. J. Geosci. 2014 10.1007/s12517-012-0765-5 7 397 

  8. Yigit Displacement response of a concrete arch dam to seasonal temperature fluctuations and reservoir level rise during the first filling period: evidence from geodetic data Geomat. Nat. Hazards Risk 2016 10.1080/19475705.2015.1047902 7 1489 

  9. Gao Global monitoring of large reservoir storage from satellite remote sensing Water Resour. Res. 2012 10.1029/2012WR012063 48 W09504 

  10. 10.1117/12.2027760 Kleine, I., Rogass, C., Medeiros, P.H.A., Erpen, N.M., Francke, T., Bronstert, A., and Förster, S. (2013, January 23-26). Comparison of approaches for water surface area segmentation using high resolution TerraSAR-X data for reservoir monitoring in a large semi-arid catchment in north eastern Brazil. Proceedings of the 2013 SPIE Remote Sensing, Dresden, Germany. 

  11. Sima Using satellite data to extract volume-area-elevation relationships for Urmia Lake, Iran J. Great Lakes Res. 2013 10.1016/j.jglr.2012.12.013 39 90 

  12. Calmant Calibration of Envisat radar altimeter over Lake Issykkul Adv. Space Res. 2013 10.1016/j.asr.2012.06.039 51 1523 

  13. Birkett Investigating the performance of the Jason-2/OSTM Radar Altimeter over Lakes and Reservoirs Mar. Geodesy 2010 10.1080/01490419.2010.488983 33 204 

  14. Shimizu, N. (2015, January 12-13). Rock Displacement Monitoring using Satellite Technologies-GPS and InSAR. Proceedings of the ISRM VietRock International Workshop, Hanoi, Vietnam. 

  15. Lazecky, M., Perissin, D., Lei, L., Qin, Y., and Scaioni, M. (2003, January 9-10). Plover Cove Dam Monitoring with Spaceborne InSAR Technique in Hong Kong. Proceedings of the 2nd Joint International Symposium on Deformation Monitoring (JISDM), Nottingham, UK. 

  16. 10.1117/12.2071222 Dardanelli, G., La Loggia, G., Perfetti, N., Capodici, F., Puccio, L., and Maltese, A. (2014, January 22-25). Monitoring displacements of an earthen dam using GNSS and remote sensing. Proceedings of the 2014 SPIE Remote Sensing, Amsterdam, The Netherlands. 

  17. Dardanelli Hydraulic models and finite elements for monitoring of an earth dam, by using GNSS techniques Period. Polytech. Civ. Eng. 2017 61 421 

  18. Thome Radiometric calibration of Landsat Photogramm. Eng. Remote Sens. 1997 63 853 

  19. Epema, G.F. (1990, January 20-24). Effect of moisture content on spectral reflectance in a playa area in Southern Tunisia. Proceedings of the International Symposium Remote Sensing and Water Resources, Enschede, The Netherlands. 

  20. Airbus Defence & Space (2018, January 05). Radiometric Calibration of TerraSAR-X Data-Beta Naught and Sigma Naught Coefficient Calculation. Available online: https://spacedata.copernicus.eu/documents/12833/14537/TerraSAR-X_RadiometricCalculations. 

  21. E-Geos (2017, January 03). COSMO SkyMed Image Calibration. Available online: http://www.e-geos.it/products/pdf/COSMO-SkyMed-Image_Calibration.pdf. 

  22. Ciraolo The classification of submerged vegetation using hyperspectral MIVIS data Ann. Geophys. 2006 49 287 

  23. Welch Merging Multiresolution SPOT HRV and Landsat TM Data Photogramm. Eng. Remote Sens. 1987 53 301 

  24. Tou, J.T., and Gonzalez, R.C. (1974). Pattern Recognition Principles, Addison-Wesley Publishing Company. 

  25. Jensen, J.R. (1986). Introductory Digital Image Processing, Prentice-Hall. 

  26. Liebe Suitability and Limitations of ENVISAT ASAR for Monitoring Small Reservoirs in a Semiarid Area IEEE Trans. Geosci. Remote Sens. 2009 10.1109/TGRS.2008.2004805 47 1536 

  27. Henriksen Atmospheric correction for troposphere and stratosphere in radio ranging of satellites The Use of Artificial Satellites for Geodesy 1972 Volume 15 247 

  28. Niell Global mapping functions for the atmosphere delay at radio wavelengths J. Geophys. Res. 1996 10.1029/95JB03048 101 3227 

  29. Klobuchar Ionospheric Effects on GPS Global Positioning System: Theory and Applications 1996 Volume 1 485 

  30. Schwiderski On charting global ocean tides Rev. Geophys. Space Physics. 1980 10.1029/RG018i001p00243 18 243 

  31. Tammaro The GPS network of Ischia Island: Ground deformations in an active volcanic area (1998-2010) Quad. Geofis. 2011 95 95 

  32. Panza The SISMA prototype system: Integrating Geophysical Modeling and Earth Observation for time-dependent seismic hazard assessment Nat. Hazards 2013 10.1007/s11069-011-9981-7 69 1179 

  33. Fermi, M., Caldera, S., Chersich, M., and Osmo, M. (2010, January 9-12). Validazione del software NDA Professional per la compensazione di reti di stazioni permanenti GNSS. Proceedings of the 14a Conferenza Nazionale ASITA, Brescia, Italy. 

  34. Dardanelli, G., and Sciortino, M. (2010, January 3-5). Time series analysis in the UNIPA NRTK GNSS network. Proceedings of the 5th International Conference and Exhibition, Melaha, Location Technologies and Solutions: The Next Frontier, Cairo, Egypt. 

  35. Dardanelli La rete GNSS per il posizionamento in tempo reale dell’Università di Palermo: progetto, realizzazione e primi risultati Boll. SIFET 2008 2 107 

  36. Italian Space Agency (2017, January 03). COSMO-SkyMed. Available online: http://www.e-geos.it/images/documents/COSMO-SkyMed%20Mission%20and%20Products%20Description.pdf. 

  37. Yan Low-Backscatter Ocean Features in Synthetic Aperture Radar Imagery Johns Hopkins APL Tech. Dig. 2000 21 116 

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