An improved geopositioning model of QuickBird high resolution satellite imagery by compensating spatial correlated errors
Tài liệu tham khảo
Aguilar, 2007, Geometric accuracy assessment of QuickBird basic imagery using different operational approaches, Photogram. Eng. Remote Sens., 73, 1321, 10.14358/PERS.73.12.1321
Aguilar, 2008, Geometric accuracy assessment of the orthorectification process from very high resolution satellite imagery for common agricultural policy purposes, Int. J. Remote Sens., 29, 7181, 10.1080/01431160802238393
Aguilar, 2013, Assessing geometric accuracy of the orthorectification process from GeoEye-1 and WorldView-2 panchromatic images, Int. J. Appl. Earth Obs. Geoinf., 21, 427, 10.1016/j.jag.2012.06.004
Dial, G., Grodecki, J., 2002. Block adjustment with rational polynomial camera models. In: Proceedings of APSRS 2002 Annual Conference, Washington DC, 22–26 April (on CDROM).
Dowman, I., Dolloff, J.T., 2000. An evaluation of rational functions for photogram-metric restitution. In: The International Archives of Photogrammetry and Remote Sensing, Amsterdam, The Netherlands, Vol. XXXIII, PartB3/1, pp. 252–266.
Fraser, 2003, Bias compensation in rational functions for IKONOS satellite imagery, Photogram. Eng. Remote Sens., 69, 53, 10.14358/PERS.69.1.53
Fraser, 2005, Bias compensated RPCs for sensor orientation of high-resolution satellite imagery, Photogram. Eng. Remote Sens., 71, 909, 10.14358/PERS.71.8.909
Fraser, 2002, Processing of IKONOS imagery for submetre 3D positioning and building extraction, ISPRS J. Photogram. Remote Sens., 56, 177, 10.1016/S0924-2716(02)00045-X
Fraser, 2006, Sensor orientation via RPCs, ISPRS J. Photogram. Remote Sens., 60, 182, 10.1016/j.isprsjprs.2005.11.001
Grodecki, J., Dial, G., 2001. IKONOS geometric accuracy. In: Proceedings of Joint International Workshop on High Resolution Mapping from Space. Hannover, Germany, 19–21 September, pp. 234–251 (CD-ROM).
Grodecki, 2003, Block adjustment of high-resolution satellite images described by rational polynomials, Photogram. Eng. Remote Sens., 69, 59, 10.14358/PERS.69.1.59
Koch, 1977, Least squares adjustment and collocation, Bulletin Géulletine, 51, 127
Li, 2007, Integration of Ikonos and QuickBird imagery for geopositioning accuracy analysis, Photogram. Eng. Remote Sens., 73, 1067
Li, 2011, Efficient estimation of variance and covariance components: a case study for GPS stochastic model evaluation, IEEE Trans. Geosci. Remote Sens., 49, 203, 10.1109/TGRS.2010.2054100
Madani, M., 1999. Real-time sensor-independent positioning by rational functions. In: Proc. of ISPRS Workshop on Direct versus Indirect Methods of Sensor Orientation, Barcelona, Spain, 25–26, November, pp. 64–75.
Moritz, 1980, Statistical foundations of collocation, Boll Geod. Sci. Affini., 2, 131
Noguchi, 2004, Accuracy assessment of QuickBird stereo imagery, Photogram. Rec., 19, 128, 10.1111/j.1477-9730.2004.00035.x
OGC (OpenGIS Consortium), 1999. The OpenGIS abstract specification –Topic 7: The earth imagery case. <http://portal.opengeospatial.org/files/?artifact_id=7467> (accessed 16.11.09).
Shen, Y., Li, C., Qiao, G., Liu, S., 2012. Accuracy analysis of HRSI-based geopositioning using least squares collocation, ISPRS, 25, August – 1, Sept., Melbourne, Australia (In USB).
Tao, 2001, A comprehensive study of the rational function model for photogrammetric processing, Photogram. Eng. Remote Sens., 67, 1347
Tao, 2002, 3D reconstruction methods based on the rational function model, Photogram. Eng. Remote Sens., 68, 705
Tong, 2010, Bias-corrected rational polynomial coefficients for high accuracy geo-positioning of QuickBird stereo imagery, ISPRS J. Photogram. Remote Sens., 65, 218, 10.1016/j.isprsjprs.2009.12.004
Toutin, 2006, Comparison of 3D physical and empirical models for generating DSMs from stereo HR images, Photogram. Eng. Remote Sens., 72, 597, 10.14358/PERS.72.5.597
Tscherning, 1978, Collocation and least squares methods as a tool for handling gravity field dependent data obtained through space research techniques, Bulletin Géodésique, 52, 199, 10.1007/BF02521773
Wang, 2005, Evaluation and improvement of geopositioning accuracy of IKONOS stereo imagery, J. Survey. Eng., 131, 35, 10.1061/(ASCE)0733-9453(2005)131:2(35)
Yang, 2009, Adaptive collocation with application in height system transformation, J. Geodesy, 83, 403, 10.1007/s00190-008-0226-9