[6] JACOBSEN K. Geometric Infmation Potential of IRS1C PANimages[C]IEEE 1999 International Geoscience Remote Sensing Symposium, June 28 July 02, 1999, Hamburg, Germany. IEEE, 1999. DOI:10.1109IGARSS.1999.773522.
[7] L HUANG, T SUN, T ZHANG et al. Application of DIROEF Algorithm for Noncollinear Multiple CCD Array Stitching of the Chinese Mapping Satellite 1-02. IEEE Geoscience & Remote Sensing Letters, 1-5(2017).
[8] Y CHENG, S JIN, M WANG et al. Image Mosaicking Approach for a Double-Camera System in the GaoFen2 Optical Remote Sensing Satellite Based on the Big Virtual Camera. Sensors, 17, 1441(2017).
[10] CAO J, ZHANG Z, JIN S, et al. Geometric Stitching of a HaiYang1C Ultra Violet Imager with a Distted Virtual Camera[J]. Optics express, 2020, 28(9): 1410914126. DOI:10.1364OE.391418.
[15] J CAO, X YUAN, J GONG. In-orbit Geometric Calibration and Validation of ZY-3 Three-line Cameras Based on CCD-detector Look Angles. The Photogrammetric Record, 30, 211-226(2015).
[20] J LIANG, J GONG, W LI. Applications and Impacts of Google Earth: A Decadal Review(2006–2016). ISPRS Journal of Photogrammetry and Remote Sensing, 146, 91-107(2018).
[22] C W JING, A SHORTRIDGE, S P LIN et al. Comparison and Validation of SRTM and ASTER GDEM for a Subtropical Landscape in Southeastern China. International Journal of Digital Earth, 7, 969-992(2014).
[23] DU X P, GUO H D, FAN X T, et al. Vertical Accuracy Assessment of SRTM ASTER GDEM over Typical Regions of China Using ICESatGLAS[J]. Earth Science (Journal of China University of Geosciences), 2013, 38(4): 887897. DOI: 10.3799dqkx.2013.087.