GNSS World of China

Volume 44 Issue 4
Aug.  2019
Turn off MathJax
Article Contents
LENG Bo, WANG Feng, YOU Hongjian, HU Yuxin. Research on improvement method of positioning accuracy of area array image[J]. GNSS World of China, 2019, 44(4): 8-15. doi: DOI:10.13442/j.gnss.1008-9268.2019.04.002
Citation: LENG Bo, WANG Feng, YOU Hongjian, HU Yuxin. Research on improvement method of positioning accuracy of area array image[J]. GNSS World of China, 2019, 44(4): 8-15. doi: DOI:10.13442/j.gnss.1008-9268.2019.04.002

Research on improvement method of positioning accuracy of area array image

doi: DOI:10.13442/j.gnss.1008-9268.2019.04.002
  • Publish Date: 2019-08-15
  • To improve the imaging positioning accuracy of the area array camera, the airborne area array image of the northern part of Songyuan City, Jilin Province is taken as the experimental object to analyze the error and calibration of the imaging process. The imaging location of airborne area array camera has large offset errors caused by three attitude angle errors of the outer orientation elements and small distortion errors caused by internal orientation elements, such as camera lens distortion. Aiming at the above problems, the rigorous geometric positioning model is firstly used to obtain the preliminary positioning results of the area array image. Then, the resection and polynomial additional parameter models are used to solve the error caused by the internal and external orientation elements, and the more accurate positioning results are obtained. Finally, the experimental verification is carried out. The test results show that after the error calibration of the internal and external azimuth elements, the accuracy can be controlled within 5 m, and the accuracy can be improved by 94.37%. The treatment effect is remarkable. By studying the error generated by the internal and external orientation elements in the calibration area array imaging process, the positioning accuracy of the area array camera is improved, which has certain value and scientific reference for the application and promotion of area array camera imaging.

     

  • loading
  • [1]
    郭大海,吴立新,王建超,等.机载POS系统对地定位方法初探[J].国土资源遥感,2004(2):26-31.
    [2]
    王重阳.航天线阵卫星影像高精度对地定位算法研究[D].郑州:解放军信息工程大学,2016.
    [3]
    孙辉.机载光电平台目标定位与误差分析[J].中国光学,2013,6(6):912-918.
    [4]
    张涛,黄健.多光谱相机的几何定标方法[J].宇航计测技术,2008, 28(4):4-7,52.
    [5]
    龚健雅,王密,杨博.高分辨率光学卫星遥感影像高精度无地面控制精确处理的理论与方法[J].测绘学报,2017,46(10):1255-1261.
    [6]
    王冬红.机载数字传感器几何标定的模型与算法研究[D].郑州:解放军信息工程大学,2011.
    [7]
    贺少帅,周乃恩,朱振宇.稀无控制点无人机遥感影像几何定位方法研究[J].地理信息世界,2019,26(2):96-99.
    [8]
    王树根.摄影测量原理与应用[M].武汉:武汉大学出版社,2009:130.
    [9]
    杨博.光学线阵推扫式卫星影像在轨几何定标理论与方法研究[D].武汉:武汉大学,2014.
    [10]
    隋立芬,宋力杰,朱洪洲,等.误差理论与测量平差基础[M].2版,武汉:湖北出版社,2016.
    [11]
    方素平,夏晓华,肖燕,等.一种线阵相机镜头畸变的标定方法[J].西安交通大学学报,2013, 47(1):11-14.
    [12]
    田雪,雷志勇,王泽民.线阵CMOS相机镜头畸变标定方法[J].电声技术,2014,38(4):62-66.
    [13]
    李德任,王树振,周月琴.摄影测量与遥感概论[M].2版,北京:测绘出版社,2008.
    [14]
    朱铮涛,黎绍发.镜头畸变及其矫正技术[J],光学技术,2005,31(1): 136-138,141.
    [15]
    袁修孝,傅建红,左正立,等.机载POS系统用于航空遥感直接对地目标定位的精度分析[J].武汉大学学报,2006,31(10):847-850.
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (301) PDF downloads(100) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return