Please wait a minute...
 
REMOTE SENSING FOR LAND & RESOURCES    2013, Vol. 25 Issue (4) : 64-71     DOI: 10.6046/gtzyyg.2013.04.11
Technology and Methodology |
Block adjustment for ZY-3 satellite images based on RFM
HAN Jie1,2,3, GU Xingfa1,3, YU Tao1,3, XIE Yong1,3, ZHENG Fengjie1,2,3, ZHANG Feng4
1. State Key Laboratory of Remote Sensing Science, Jointly Sponsored by the Institute of Remote Sensing Applications of Chinese Academy of Sciences and Beijing Normal University, Beijing 100101, China;
2. Graduate University of Chinese Academy of Sciences, Beijing 100049, China;
3. The Center for National Spaceborne Demonstration, Beijing 100101, China;
4. Environmental Satellite Center, Ministry of Environmental Protection, Beijing 100094, China
Download: PDF(1138 KB)   HTML
Export: BibTeX | EndNote | Reference Manager | ProCite | RefWorks    
Abstract  

Through integrating three-line arrays sensor characteristics of ZY-3 satellite, using ancillary RPC files to conduct orientation, detecting the system error of RPC, and analyzing the strengths and weaknesses of four adjustable models defined in the domain of image coordinate, the authors deduced in detail the model of block adjustment for ZY-3 satellite images based on RFM. The ZY-3 stereo pair in Laizhou was selected to test the proposed method. A comparison with the direct spatial forward intersection shows that the proposed method can not only eliminate the RPC system error of ZY-3 images but also greatly improve the image positioning accuracy.

Keywords satellite thermal infrared remote sensing      Capital Zone      Qilian Mountains      field of background      temporal-spatial evolution characteristics     
:  TP79  
Issue Date: 21 October 2013
Service
E-mail this article
E-mail Alert
RSS
Articles by authors
WEN Shaoyan
QU Chunyan
SHAN Xinjian
YAN Lili
SONG Dongmei
Cite this article:   
WEN Shaoyan,QU Chunyan,SHAN Xinjian, et al. Block adjustment for ZY-3 satellite images based on RFM[J]. REMOTE SENSING FOR LAND & RESOURCES, 2013, 25(4): 64-71.
URL:  
https://www.gtzyyg.com/EN/10.6046/gtzyyg.2013.04.11     OR     https://www.gtzyyg.com/EN/Y2013/V25/I4/64
[1] 万志龙,沈智毅.有理函数模型实现影像点定位和纠正的方法[J].测绘学院学报,2002,19(3):189-190,194. Wan Z L,Shen Z Y.The method of imaging point positioning and imaging rectification by rational function model[J].Journal of Institute of Surveying and Mapping,2002,19(3):189-190,194.
[2] 巩丹超,邓雪清,张云彬.新型遥感卫星传感器几何模型——有理函数模型[J].海洋测绘,2003,23(1):31-33. Gong D C,Deng X Q,Zhang Y B.The geometric model of the new type sensor of remote sensing satellite:The rational function model[J].Hydrographic Surveying and Charting,2003,23(1):31-33.
[3] 谢青,陆宇红,魏福恒.IKONOS卫星影像立体测图中有理函数模型的研究[J].测绘与空间地理信息,2009,32(1):187-190. Xie Q,Lu Y H,Wei F H.Research on rational function model for stereo mapping using IKONOS satellite image[J].Geomatics & Spatial Information Technology,2009,32(1):187-190.
[4] 黎贵发.基于RFM的QuickBird少量控制点纠正控制方案与模型[J].测绘通报,2009(4):61-64. Li G F.Control point planning and model for fewer GCPs to correct the QuickBird image in RFM[J].Bulletin of Surveying and Mapping,2009(4):61-64.
[5] Grodecki J,Dial G.Block adjustment of high-resolution satellite images described by rational polynomials [J].Photogrammetric Engineering and Remote Sensing,2003,69(1):59-68.
[6] 张永生,刘军.高分辨率遥感卫星立体影像RPC模型定位的算法及其优化[J].测绘工程,2004,13(1):1-4. Zhang Y S,Liu J.The positioning algorithm based on RPC model and its optimizing of stereo images from high resolution remote sensing satellites[J].Engineering of Surveying and Mapping,2004,13(1):1-4.
[7] Zhen X,Zhang Y.A generic method for RPC refinement using ground control information[J].ISPRS Journal of Photogrammetr and Remote Sensing,2009,75(9):1083-1092.
[8] Tong X H,Liu S J,Weng Q H.Bias-corrected rational polynomial coefficients for high accuracy geo-positioning of QuickBird stereo imagery[J].Photogrammetry and Remote Sensing,2010,65(2):218-226.
[9] 李德仁.我国第一颗民用三线阵立体测图卫星——资源三号测绘卫星[J].测绘学报,2012,41(3):317-322. Li D R.China's first civilian three-line-array stereo mapping satellite:ZY-3[J].Acta Geodaetica et Cartographica Sinica,2012,41(3):317-322.
[10] 李德仁,王密."资源三号"卫星在轨几何定标及精度评估[J].航天返回与遥感,2012,33(3):1-6. Li D R,Wang M.On-orbit geometric calibration and accuracy assessment of ZY-3[J].Spacecraft Recovery and Remote Sensing,2012,33(3):1-6.
[11] Tao C V,Hu Y.3D reconstruction methods based on the rational function model [J].Photogrammetric Engineering and Remote Sensing,2002,68(7):705-714.
[12] 张过,厉芳婷,江万寿,等.推扫式光学卫星影像系统几何校正产品的3维几何模型及定向算法研究[J].测绘学报,2010,39(1):34-38. Zhang G,Li F T,Jiang W S,et al.Study of three-dimensional geometric model and orientation algorithms for systemic geometric correction product of push-broom optical satellite image[J].Acta Geodaetica et Cartographica Sinica,2010,39(1):34-38.
[13] 刘斌,孙喜亮,邸凯昌,等.资源三号卫星传感器校正产品定位精度验证与分析[J].国土资源遥感,2012,24(4):36-40. Liu B,Sun X L,Di K C,et al.Accuracy analysis and validation of ZY-3's sensor corrected products[J].Remote Sensing for Land & Resources,2012,24(4):36-40.
[1] WEN Shaoyan, QU Chunyan, SHAN Xinjian, YAN Lili, SONG Dongmei. Satellite thermal infrared background field variation characteristics of the Qilian Mountains and the Capital Zone[J]. REMOTE SENSING FOR LAND & RESOURCES, 2013, 25(3): 138-144.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
京ICP备05055290号-2
Copyright © 2017 Remote Sensing for Natural Resources
Support by Beijing Magtech