• Infrared and Laser Engineering
  • Vol. 46, Issue 11, 1117004 (2017)
Li Guoyuan1、2、*, Tang Xinming1、2, Fan Wenfeng1, Dou Xianhui1, and Ma Yue3
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    DOI: 10.3788/irla201746.1117004 Cite this Article
    Li Guoyuan, Tang Xinming, Fan Wenfeng, Dou Xianhui, Ma Yue. On-orbit geometric calibration of satellite laser altimeter using ground-based IR detectors[J]. Infrared and Laser Engineering, 2017, 46(11): 1117004 Copy Citation Text show less
    References

    [1] Tang Xinming, Li Guoyuan, Gao Xiaoming, et al. The rigorous geometric model of satellite laser altimeter and preliminarily accuracy validation[J]. Acta Geodaetica et Cartographica Sinica, 2016, 45(10):1182-1191. (in Chinese)

    [2] Luthcke S B, Rowlands D D, Mccarthy J J, et al. Spaceborne laser-altimeter-pointing bias calibration from range residual analysis[J]. Journal of Spacecraft & Rockets, 2000, 37(3): 374-384.

    [3] Schutz B E. GLAS altimeter post-launch calibration/validation Plan[R]. Austin, USA: Center for Space Research, University of Texas at Austin, 2001.

    [4] Martin C F, Thomas R H, Krabill W B, et al. ICESat range and mounting bias estimation over precisely-surveyed terrain[J]. Geophysical Research Letters, 2005, 32(21): 242-257.

    [5] Magruder L, Silverberg E, Webb C, et al. In situ timing and pointing verification of the ICESat altimeter using a ground based system[J]. Geophysical Research Letters, 2005, 322(21): 365-370.

    [6] Li Guoyuan, Tang Xinming, Gao Xiaoming, et al. Pointing angle calibration of ZY3-02 satellite laser altimeter using terrain matching[J]. ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 2017, XLII-1/W1: 205-210.

    [7] Sirota J M, Bae S, Millar P, et al. The transmitter pointing determination in the Geoscience Laser Altimeter System [J]. Geophysical Research Letters, 2005, 322(22): 231-238.

    [8] Li Guoyuan, Tang Xinming, Gao Xiaoming, et al. ZY-3 block adjustment supported by GLAS laser altimetry data [J]. The Photogrammetric Record, 2016, 31(153):88-107.

    [9] Zhu Jianfeng, Wang Yu, Hu Yu, et al. Systematic error analysis and calibration of satellite laser altimeter[J].Bulletin of Surveying and Mapping, 2014, 39(s1): 137-140. (in Chinese)

    [10] Huang Chaowei, Li Guoyuan, Li Shanshan, et al. Systematic error analysis of satellite laser altimeter on different terrain [J]. Science of Surveying and Mapping, 2016, 41(1): 44-49. (in Chinese)

    [11] Ma Yue, Yang Fanlin, Yi Hong, et al. Calibration method of on-orbit attitude systematic error for space-borne laser altimeter of earth observation[J]. Infrared and Laser Engineering, 2015, 44(8): 2401-2405. (in Chinese)

    [12] Huang Jipeng, Wang Yanjie, Sun Honghai, et al. Precise position measuring system for laser spots[J]. Optics & Precision Engineering, 2013, 21(4): 841-848. (in Chinese)

    [13] Zhou Hui, Li Song, Wang Liangxun, et al. Influence of noise on range error for satellite laser altimeter[J]. Infrared and Laser Engineering, 2015, 44(8): 2256-2261. (in Chinese)

    [14] Yang Chi, Hu Wenyi, Luo Min, et al. Effect of elliptic Gaussian footprint on range and range error for satellite laser altimeter[J]. Infrared and Laser Engineering, 2016, 45(7): 0717003. (in Chinese)

    [15] Li Guoyuan, Tang Xinming, Zhang Chongyang, et al. Multi-criteria constraint algorithm for selecting ICESat/GLAS data as elevation control points[J]. Journal of Remote Sensing, 2017, 21(1): 96-104. (in Chinese)

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    Li Guoyuan, Tang Xinming, Fan Wenfeng, Dou Xianhui, Ma Yue. On-orbit geometric calibration of satellite laser altimeter using ground-based IR detectors[J]. Infrared and Laser Engineering, 2017, 46(11): 1117004
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