...
首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >ASTEROID (21) LUTETIA: SEMI-AUTOMATIC IMPACT CRATERS DETECTION AND CLASSIFICATION
【24h】

ASTEROID (21) LUTETIA: SEMI-AUTOMATIC IMPACT CRATERS DETECTION AND CLASSIFICATION

机译:星形(21)LUTETIA:半自动碰撞槽检测和分类

获取原文
           

摘要

The need to develop an automated method, independent of lighting and surface conditions, for the identification and measurement of impact craters, as well as the creation of a reliable and efficient tool, has become a justification of our studies. This paper presents a methodology for the detection of impact craters based on their spectral and spatial features. The analysis aims at evaluation of the algorithm capabilities to determinate the spatial parameters of impact craters presented in a time series. In this way, time-consuming visual interpretation of images would be reduced to the special cases. The developed algorithm is tested on a set of OSIRIS high resolution images of asteroid Lutetia surface which is characterized by varied landforms and the abundance of craters created by collisions with smaller bodies of the solar system.The proposed methodology consists of three main steps: characterisation of objects of interest on limited set of data, semi-automatic extraction of impact craters performed for total set of data by applying the Mathematical Morphology image processing (Serra, 1988, Soille, 2003), and finally, creating libraries of spatial and spectral parameters for extracted impact craters, i.e. the coordinates of the crater center, semi-major and semi-minor axis, shadow length and cross-section. The overall accuracy of the proposed method is 98?%, the Kappa coefficient is 0.84, the correlation coefficient is ~?0.80, the omission error 24.11?%, the commission error 3.45?%. The obtained results show that methods based on Mathematical Morphology operators are effective also with a limited number of data and low-contrast images.
机译:需要开发一种独立于光照和表面条件的自动方法来识别和测量撞击坑的方法,以及创建可靠而有效的工具,已成为我们研究的理由。本文提出了一种基于撞击坑的光谱和空间特征的检测方法。该分析旨在评估算法能力,以确定时间序列中显示的撞击坑的空间参数。以这种方式,将费时的图像视觉解释减少到特殊情况。该算法在一组小行星Lutetia的OSIRIS高分辨率图像上进行了测试,该图像的特征是地形变化以及与太阳系较小物体碰撞产生的大量陨石坑。拟议的方法包括三个主要步骤:有限数据集上的目标物体,通过应用数学形态学图像处理(Serra,1988,Soille,2003)半自动提取撞击坑,获取全部数据,最后,创建空间和光谱参数库提取撞击坑,即坑中心,半长轴和半短轴,阴影长度和横截面的坐标。所提方法的总体精度为98%,卡伯系数为0.84,相关系数约为〜0.80,漏失误差为24.11%,佣金误差为3.45%。获得的结果表明,基于数学形态学算子的方法对于有限数量的数据和低对比度图像也有效。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号