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DATA PROCESSING TECHNOLOGY OF AIRBORNE 3D IMAGE
作者姓名:YOU Hongjian  LIU Shaochuang  LI Shukai
作者单位:Ph.D candidate,associate researcher,Institut e of Remote Sensing Applications,Chinese Academy of Sciences,P.O.Box 9718,  
基金项目:ProjectsupportedbyChinaNational 863_Hi_techProject (No.863_30 8_1 2_0 1 (1 ) ) .
摘    要:1 IntroductionRemotesensinghasbeenappliedinmanyfieldsinthepastdecades ,butthemodetoacquireandpro cesstheremotesensingdatadoesnotchangeradi cally .Theremotesensingimagemustbegeo_refer encedthroughongroundcontrolpoints (GCPs) ,andstereomatchingmustbeappliedi…

收稿时间:3 February 2010

Data processing technology of airborne 3D image
YOU Hongjian,LIU Shaochuang,LI Shukai.DATA PROCESSING TECHNOLOGY OF AIRBORNE 3D IMAGE[J].Geo-Spatial Information Science,2001,4(3):62-67.
Authors:You Hongian  Liu Schaochuang  Li Shukai
Institution:YOU Hongjian LIU Shaochuang LI Shukai
Abstract:Airborne 3D image which integrates GPS, attitude measurement unit (AMU), scanning laser rangefinder (SLR) and spectra scanner has been developed successfully. The spectral scanner and SLR use the same optical system which ensures laser point to match pixel seamlessly. The distinctive advantage of 3D image is that it can produce geo-referenced images and DSM (digital surface models) images without any ground control points (GCPs). It is no longer necessary to survey GCPs and with some softwares the data can be processed and produce digital surface models (DSM) and geo-referenced images in quasi-real-time, therefore the efficiency of 3D image is 10–100 times higher than that of traditional approaches. The processing procedure involves decomposing and checking the raw data, processing GPS data, calculating the positions of laser sample points, producing geo-referenced image, producing DSM and mosaicing strips. The principle of 3D image is first introduced in this paper, and then we focus on the fast processing technique and algorithms. The flight tests and processed results show that the processing technique is feasible and can meet the requirement of quasi-real-time applications.
Keywords:D image  fast processing  DSM  geo_referenced images
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