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題名 Mitigation of atmospheric delay from InSAR processing
作者 Hung, Lien Chi;Tsai, Ya Lun;Lin, Shih
貢獻者 地政系
關鍵詞 Deformation; Interferometry; Meteorology; Motion compensation; Remote sensing; Atmospheric delay; D-inSAR; InSAR; Insar processing; Meteorological data; SAR; Supplementary data; Surface deformation; Synthetic aperture radar
日期 2013-10
上傳時間 26-May-2015 18:07:45 (UTC+8)
摘要 Synthetic Aperture Radar (SAR) is capable of day/night and all-weather data acquisition, moreover, detection of centimeter-level deformation is achievable through InSAR processing. However, it was realized that InSAR measurements are easily affected by the atmosphere as the radar signals propagate through the atmosphere. Therefore, in order to acquire accurate surface deformation, correction of atmosphere delay error is critical and becomes the main topic of this paper. In which a pair of ALOS PALSAR images were employed and the InSAR processing was performed. Subsequently supplementary data including local meteorological data and MERIS data were introduced to generate the atmospheric delay interferogram. After the atmospheric delay interferogram was removed from the original interferogram, D-InSAR was implemented to obtain the deformation. After comparing with GPS observations, the reliability and accuracy of the detected deformation was demonstrated.
關聯 34th Asian Conference on Remote Sensing 2013, ACRS 2013, 1, 2013, 696-702, 34th Asian Conference on Remote Sensing 2013, ACRS 2013; Bali; Indonesia; 20 October 2013 到 24 October 2013; 代碼 105869
資料類型 conference
dc.contributor 地政系
dc.creator (作者) Hung, Lien Chi;Tsai, Ya Lun;Lin, Shih
dc.date (日期) 2013-10
dc.date.accessioned 26-May-2015 18:07:45 (UTC+8)-
dc.date.available 26-May-2015 18:07:45 (UTC+8)-
dc.date.issued (上傳時間) 26-May-2015 18:07:45 (UTC+8)-
dc.identifier.uri (URI) http://nccur.lib.nccu.edu.tw/handle/140.119/75312-
dc.description.abstract (摘要) Synthetic Aperture Radar (SAR) is capable of day/night and all-weather data acquisition, moreover, detection of centimeter-level deformation is achievable through InSAR processing. However, it was realized that InSAR measurements are easily affected by the atmosphere as the radar signals propagate through the atmosphere. Therefore, in order to acquire accurate surface deformation, correction of atmosphere delay error is critical and becomes the main topic of this paper. In which a pair of ALOS PALSAR images were employed and the InSAR processing was performed. Subsequently supplementary data including local meteorological data and MERIS data were introduced to generate the atmospheric delay interferogram. After the atmospheric delay interferogram was removed from the original interferogram, D-InSAR was implemented to obtain the deformation. After comparing with GPS observations, the reliability and accuracy of the detected deformation was demonstrated.
dc.format.extent 176 bytes-
dc.format.mimetype text/html-
dc.relation (關聯) 34th Asian Conference on Remote Sensing 2013, ACRS 2013, 1, 2013, 696-702, 34th Asian Conference on Remote Sensing 2013, ACRS 2013; Bali; Indonesia; 20 October 2013 到 24 October 2013; 代碼 105869
dc.subject (關鍵詞) Deformation; Interferometry; Meteorology; Motion compensation; Remote sensing; Atmospheric delay; D-inSAR; InSAR; Insar processing; Meteorological data; SAR; Supplementary data; Surface deformation; Synthetic aperture radar
dc.title (題名) Mitigation of atmospheric delay from InSAR processing
dc.type (資料類型) conferenceen