On-orbit Geometric Calibration Method Based on Star Observation to Correct Thermal Deformation of GEO Optical Satellite

Author:

Huang Jie,Xi Juntong,Wu Yayun

Abstract

Abstract The thermal environment in geostationary orbit is much complicated than low orbit. Thermal deformation is a primary factor to deteriorate geometric quality of remote sensing image of geostationary optical satellite. The on orbit geometric quality testing results of the SDLT-1 satellite of China show that the light of sight (LOS) deviation in longitude and latitude are 26 pixels and 14 pixels respectively which are out of the accuracy requirement of the satellite. Therefore a novel on-orbit geometric calibration method based on star observation is proposed to correct thermal deformation of geostationary optical satellite. The images embodied stars are employed as experiment sources to evaluate the proposed method which are compared with traditional method based on landmarks. The results show that the geometric accuracy of the proposed method can achieve 3.2 pixels which are better than traditional calibration method based on landmarks.

Publisher

Research Square Platform LLC

Reference26 articles.

1. Jun Chen, Jun-Gang Yang, Wei An, and Zhi-Jie Chen. An Attitude Jitter Correction Method for Multispectral Parallax Imagery Based on Compressive Sensing. IEEE GEOSCIENCE AND REMOTE SENSING LETTERS, VOL. 14, NO. 11, NOVEMBER 2017.

2. Shijie Liu, Xiaohua Tong, Fengxiang Wang, Wenzheng Sun, Chengcheng Guo, Zhen Ye, Yanmin Jin, Huan Xie,and Peng Chen. IEEE JOURNAL OF SELECTED TOPICS IN APPLIED EARTH OBSERVATIONS AND REMOTE SENSING, VOL. 9, NO. 12, DECEMBER 2016.

3. J. L. Barker and J. C. Seiferth, “Landsat thematic mapper band-to-band registration,” in Proc. Int. Remote Sens. Sustainable Future Geosci. Remote Sens. Symp., 1996, vol. 3, pp. 1600–1602.

4. J. A. Moody, “SBIRS Background. Achieving affordable operational requirements on the SBIRS program,” AU/ACSC, vol. 548, pp. 5–12, Mar. 1997.

5. “Correction of ZY-3 Image Distortion Caused by Satellite Jitter via Virtual Steady Reimaging Using Attitude Data;Wang M;ISPRS Journal of Photogrammetry and Remote Sensing,2016

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