Mural Image Rectification Based on Correction of Laser Point Cloud Intensity

Image rectification can reduce the distortion of digital mural image and attach rectified image with spatial properties, thus becomes one of key steps in mural image digital protection. As an intermediate data of 2D and 3D, intensity information of laser scanning is significant on texture mapping an...

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Main Authors: FANG Wei, HUANG Xianfeng, ZHANG Fan, LI Deren
Format: Article
Language:zho
Published: Surveying and Mapping Press 2015-05-01
Series:Acta Geodaetica et Cartographica Sinica
Subjects:
Online Access:http://html.rhhz.net/CHXB/html/2015-5-541.htm
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spelling doaj-59c7934194094fe58d049d1d3ba2bacb2020-11-24T21:10:37ZzhoSurveying and Mapping PressActa Geodaetica et Cartographica Sinica1001-15951001-15952015-05-0144554154710.11947/j.AGCS.2015.2014024420150510Mural Image Rectification Based on Correction of Laser Point Cloud IntensityFANG WeiHUANG XianfengZHANG FanLI DerenImage rectification can reduce the distortion of digital mural image and attach rectified image with spatial properties, thus becomes one of key steps in mural image digital protection. As an intermediate data of 2D and 3D, intensity information of laser scanning is significant on texture mapping and rectification of mural images in grottos. However, the unusual phenomenon of laser intensity at near distance makes it very difficult on extracting feature points for image rectification needed. To eliminate the near distance effect on intensity-based mural rectification, the procedure of laser transmission was studied and the intensity function of defocusing effect of laser receiving optics was deduced. By dividing point cloud intensity values with corresponding values of functions with estimated parameters from collected sample data, range and incidence angle invariant relative reflectance was generated, thus unusual intensity of point cloud data was corrected effectively. Experiments demonstrate that this method can effectively solve the problem of feature points in respect of low density and uneven distribution, thus achieve better results than general digital image processing method.http://html.rhhz.net/CHXB/html/2015-5-541.htmlaser scanning point cloudintensity correctiondefocusing effectmural image rectification
collection DOAJ
language zho
format Article
sources DOAJ
author FANG Wei
HUANG Xianfeng
ZHANG Fan
LI Deren
spellingShingle FANG Wei
HUANG Xianfeng
ZHANG Fan
LI Deren
Mural Image Rectification Based on Correction of Laser Point Cloud Intensity
Acta Geodaetica et Cartographica Sinica
laser scanning point cloud
intensity correction
defocusing effect
mural image rectification
author_facet FANG Wei
HUANG Xianfeng
ZHANG Fan
LI Deren
author_sort FANG Wei
title Mural Image Rectification Based on Correction of Laser Point Cloud Intensity
title_short Mural Image Rectification Based on Correction of Laser Point Cloud Intensity
title_full Mural Image Rectification Based on Correction of Laser Point Cloud Intensity
title_fullStr Mural Image Rectification Based on Correction of Laser Point Cloud Intensity
title_full_unstemmed Mural Image Rectification Based on Correction of Laser Point Cloud Intensity
title_sort mural image rectification based on correction of laser point cloud intensity
publisher Surveying and Mapping Press
series Acta Geodaetica et Cartographica Sinica
issn 1001-1595
1001-1595
publishDate 2015-05-01
description Image rectification can reduce the distortion of digital mural image and attach rectified image with spatial properties, thus becomes one of key steps in mural image digital protection. As an intermediate data of 2D and 3D, intensity information of laser scanning is significant on texture mapping and rectification of mural images in grottos. However, the unusual phenomenon of laser intensity at near distance makes it very difficult on extracting feature points for image rectification needed. To eliminate the near distance effect on intensity-based mural rectification, the procedure of laser transmission was studied and the intensity function of defocusing effect of laser receiving optics was deduced. By dividing point cloud intensity values with corresponding values of functions with estimated parameters from collected sample data, range and incidence angle invariant relative reflectance was generated, thus unusual intensity of point cloud data was corrected effectively. Experiments demonstrate that this method can effectively solve the problem of feature points in respect of low density and uneven distribution, thus achieve better results than general digital image processing method.
topic laser scanning point cloud
intensity correction
defocusing effect
mural image rectification
url http://html.rhhz.net/CHXB/html/2015-5-541.htm
work_keys_str_mv AT fangwei muralimagerectificationbasedoncorrectionoflaserpointcloudintensity
AT huangxianfeng muralimagerectificationbasedoncorrectionoflaserpointcloudintensity
AT zhangfan muralimagerectificationbasedoncorrectionoflaserpointcloudintensity
AT lideren muralimagerectificationbasedoncorrectionoflaserpointcloudintensity
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