期刊文献+

基于有理函数模型的线阵CCD遥感影像水平纠正技术 被引量:4

The Transformation from Tilted Image to Horizontal Image of Line Camera Based on the Rational Function Model
下载PDF
导出
摘要 利用有理函数模型替代严格传感器模型已经成为当前高分辨率遥感影像通用的数据标准。对于附加有理函数模型系数的线阵CCD遥感影像,提出了一种利用反解有理函数模型实现倾斜像片与水平像片转换方法。其主要原理同传统框幅式倾斜影像与水平影像的转换相似:将倾斜像片上像点投影到物方水平面上;然后在物方水平面上根据原始倾斜像片的地面采样间隔进行重采样,即可获取线阵CCD遥感影像的水平影像。最后通过试验分析比较原始影像和纠正后的倾斜像片,得出关于纠正后线阵CCD卫星遥感影像的几何特性。 Utilizing the rational function model(RFM) to replace physical sensor models in photogrammetric mapping is becoming a standard way for economical and fast mapping from high-resolution images. To an image of line camera with the rational function coefficients, a method which can use the inverse form of RFM to transform the titled image to the horizontal image was provided. A point on the titled image is projected into an object horizontal plane and the image on the object plane is resampled according to the ground sample distance of original image. The new image can be regarded as the horizontal image of line camera. At last compared the original image with the corrected image through the experiments, the geometric character of the new horizontal image was analyzed and some useful conclusion about the horizontal image of line camera was obtained.
机构地区 西安测绘研究所
出处 《测绘科学技术学报》 北大核心 2012年第4期240-243,248,共5页 Journal of Geomatics Science and Technology
基金 国家自然科学基金项目(40901245)
关键词 有理函数模型 线阵CCD传感器 水平影像 倾斜影像 影像纠正 RFM(Rational Function Model) linear camera horizontal image tilted image image rectify
  • 相关文献

参考文献7

  • 1TAO C,YONG H.A Comprehensive Study of the RationalFunction Model for Photogrammetric Processing[J].Jour-nal of Photogrammetric Engineering&Remote Sensing,2001,67(12):1347-1357.
  • 2OKAMOTO A.Orientation and Construction of Models[J].Photogrammetric Engineering&Remote Sensing,1981,47(12):1739-1752.
  • 3ONO T.Epipolar Resampling of High Resolution SatelliteImagery[J].International Archives of Photogrammetry andRemote Sensing,1999,27(B3):635-645.
  • 4KIM T.A Study on the Epipolarity of Linear PushbroomImages[J].Photogrammetric Engineering&Remote Sens-ing,2000,66(8):961-966.
  • 5MORGAN M.Epipolar Resampling of Linear Array Scan-ner Scenes[D].Calgary,Alberta:University of Calgary,2004:19-30.
  • 6AYMAN F HABIB,MICHEL F MORGAN,SOOJEONG,et al.Epipolar Geometry of Line Cameras Mov-ing with Constant Velocity and Attitude[J].ETRI Jour-nal,2005,27(2):172-180.
  • 7JAEHONGOH,KIM K.Direct Epipolar Image Generationfrom IKONOS Stereo Imagery Based on RPC and ParallelProjection Model[J].Korean Journal of Remote Sensing,2006,22(5):451-456.

同被引文献36

  • 1张祖勋,周月琴.用拟合法进行SPOT影象的近似核线排列[J].武汉测绘科技大学学报,1989,14(2):20-24. 被引量:19
  • 2徐青.“数字空间”与“深空测绘”及其支撑技术[J].测绘科学技术学报,2006,23(2):97-100. 被引量:7
  • 3巩丹超,张永生,刘宏.扩展核线模型在线阵CCD卫星遥感影像立体匹配中的应用[J].高技术通讯,2006,16(6):570-574. 被引量:4
  • 4张永生,丹超,刘军,等.高分辨率遥感卫星应用--成像模型、处理算法及应用技术[M].北京:科学出版社,2007.
  • 5陈鹰.遥感影像的数字摄影测量[M].上海:同济大学出版社,2004..
  • 6Kirk R I., Kraus E H, Rosiek M. Recent Planetary Topographic Mapping at the USGS, Flagstaff: Moon, Mars, Venus, and Beyond[C]. The Interna- lional Conference on Photogrammetry and Remote Sensing, Amsterdam. Netherland, 2000.
  • 7Shan J, Yoon J S, Lee D S, et al. Photogrammetrie Analysis of the Mars Global Surveyor Mapping Data [J]. Phutogrammertric Engineering & Remote Sensing, 2005, 71(1) : 97 108.
  • 8Rosiek M, Kirk R I., Archinal B A, et al. Utility of Viking Orbiter Images and Products for MarsMapping[J].Photogrammetric EngiTzeerinK 8:. Re- mote Sensing, 2005, 71(10) : 1 187-1 195.
  • 9Lbertz J, Gehrke S, Wahlisch M, et al. Digital Cartography with HRSC on Mars Express[C]. The hlternational Archives of Phologrammetry and Re-. mote Sensing, Istanbul, Turkey, 2004.
  • 10Altmrtz J, Allwenger M, Barrell J,et al. HRSC on Mars Express: Photogrammelric and (TartographicResearch[J]. Photogrammetric Engi:weritzg & Re- mote Setzsibg, 2005, 71(10): 1 153- 1 166.

引证文献4

二级引证文献13

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部