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测绘学报  2015 

大气折射对光学卫星遥感影像几何定位的影响分析

DOI: 10.11947/j.AGCS.2015.20140211, PP. 995-1002

Keywords: 卫星遥感,线阵推扫,严密几何定位,大气折射,无控几何精度

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Abstract:

采用ISO国际标准大气模型和Owens大气折射系数算法,根据大气层内不同纬度和海拔高度处的大气折射系数分布规律,把地球大气简化为对流层和同温层的双层均匀球形大气,从在轨光学卫星CCD探元视线出发,使用视线跟踪几何算法,计算不同侧视角下大气折射产生的几何位置偏差。结果表明,大气折射几何偏差随卫星观测角的增加而非线性迅速增加。当卫星运行在650km的太阳同步轨道,侧视30°成像时,大气折射产生约2.5m的几何偏差;卫星侧视45°成像时,大气折射产生约9m的几何偏差。在高分辨率敏捷卫星成像和宽视场卫星遥感图像的严密几何定位处理中,使用本文提出的大气折射几何偏差算法和严密几何定位大气折射校正模型,在地心地固坐标系下补偿严密几何模型中存在的大气折射偏差,能够进一步提升高分辨率卫星遥感图像的无控几何定位精度,应用于我国高分系列卫星遥感图像地面几何定位处理。

References

[1]  THIERRY T. Review Article: Geometric Processing of Remote Sensing Images: Models,Algorithms and Methods[J]. International Journal of Remote Sensing,2004,25(10): 1893-1924.
[2]  POLI D,THIERRY T. Review of Developments in Geometric Modelling for High Resolution Satellite Pushbroom Sensors[J]. The Photogrammetric Record,2011,27(137): 58-73.
[3]  CRESPI M,FRATARCANGELI F,GIANNONE F,et al. SISAR: A Rigorous Orientation Model for Synchronous and Asynchronous Pushbroom Sensors Imagery[C]//ISPRS Hannover Workshop: High-resolution Earth Imaging for Geospatial Information Vol. XXXVI-1/W51,2007.
[4]  PAN Hongbo,ZHANG Guo,TANG Xinming,et al. The Geometrical Model of Sensor Corrected Products for ZY-3 Satellite[J]. Acta Geodaetica et Cartographica Sinica,2013,42(4): 516-522. (潘红播,张过,唐新明,等. 资源三号测绘卫星传感器校正产品几何模型[J]. 测绘学报,2013,42(4): 516-522.)
[5]  FAN Dazhao,LIU Chubin,WANG Tao,et al. Building & Validation of Rigorous Geometric Model of ALOS PRIISM Imagery[J]. Acta Geodaetica et Cartographica Sinica,2011,40(5): 569-574,581. (范大昭,刘楚斌,王涛,等. ALOS卫星PRISM影像严格几何模型的构建与验证[J]. 测绘学报,2011,40(5): 569-574,581.)
[6]  TANG Xinming,ZHANG Guo,ZHU Xiaoyong,et al. Triple Linear Array Imaging Geometry Model of ZiYuan-3 Surveying Satellite and Its Validation[J]. Acta Geodaetica et Cartographica Sinica,2012,41(2): 191-198. (唐新明,张过,祝小勇,等. 资源三号测绘卫星三线阵成像几何模型构建与精度初步验证[J]. 测绘学报,2012,41(2): 191-198.)
[7]  JIANG Yonghua,ZHANG Guo,TANG Xinming,et al. High Accuracy Geometric Calibration of ZY-3 Three Line Image[J]. Acta Geodaetica et Cartographica Sinica,2013,42(4): 523-529. (蒋永华,张过,唐新明,等. 资源三号测绘卫星三线阵影像高精度几何检校[J]. 测绘学报,2013,42(4): 523-529.)
[8]  DE LUSSY F,GRESLOU D,DECHOZ C,et al. Pleiades HR in Flight Geometrical Calibration: Location and Mapping of the Focal Plane[C]//Proceedings of the International Archives of the Photogrammetry,Remote Sensing and Spatial Information Sciences,XXXIX-B1,2012: 519-523,DOI: 10.5194/isprsarchives-XXXIX-B1-519-2012.
[9]  NOERDLINGER P D.Atmospheric Refraction Effects in Earth Remote Sensing[J]. ISPRS Journal of Photogrammetry & Remote Sensing,1999,54(5-6): 360-373.
[10]  GIANNONE F. A Rigorous Model for High Resolution Satellite Imagery Orientation[D]. Rome: University of Rome,2006.
[11]  WANG Zhizhuo. Principle of Photogrammetry[M]. Wuhan: Wuhan University Press,2007. (王之卓. 摄影测量原理[M]. 武汉: 武汉大学出版社,2007.)
[12]  WEI Zheng,HU Fangchao,ZHANG Bing. The Influence of Atmospheric Refraction on Aerial Digital Remote Sensing[J]. Journal of Remote Sensing,2006,10(5): 651-655. (卫征,胡方超,张兵. 大气折射对航空CCD成像精度影响的研究[J]. 遥感学报,2006,10(5): 651-655.)
[13]  The International Organization for Standardization. ISO 2533: 1975-Standard Atmosphere[S].1975.
[14]  OWENS J C. Optical Refractive Index of Air: Dependence on Pressure,Temperature and Composition[J]. Applied Optics,1967,6(1): 51-59.
[15]  YAN Ming,YU Bingyang,WANG Zhiyong. Design of Width of Panchromatic Spectra of High Resolution Optical Remote Sensing Camera Based on Pansharpening[J]. Spacecraft Recovery & Remote Sensing,2013,34(3): 1-8. (严明,于冰洋,王智勇. 从融合视角优化设计星载高分光学相机全色波段展宽[J]. 航天返回与遥感,2013,34(3): 1-8.)
[16]  STONE R C. An Accurate Method for Computing Atmosphere Refraction[J]. Publication of the Astronomical Society of the Pacific,1996,108: 1051-1058.
[17]  LIPCANUM. A Direct Method for the Calculation of Astronomical Refraction[C]//Proceedings of the Romanian Academy: Series A. [S.l.]: The Publishing House of the Romanian Academy,2005,6(2): 1-7.
[18]  ROPER L D. Precipitation Rate Versus Latitude and Longitude[J/OL]. [2011-04-26]. http://www.roperld.com/science/PrecipLatitudeLongitude.htm.
[19]  Portland State Aerospace Society. A Quick Derivation Relating Altitude to Air Pressure[J/OL]. [2004-12-22]. http://psas.pdx.edu/RocketScience/PressureAltitude_Derived.pdf.
[20]  BOSENJ F. A Formula for Approximation of the Saturation Vapor Pressure over Water[J]. Monthly Weather Review,1960,88(8): 275-276.
[21]  DE FRANCHIS C,MEINHARDT-LLOPIS E,MICHELY J,et al. Automatic Sensor Orientation Refinement of Pléiades Stereo Images[C]//2014 IEEE International Geoscience and Remote Sensing Symposium (IGARSS). Quebec: IEEE,2014:1639-1642.

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