EDGE-BASED REGISTRATION FOR AIRBORNE IMAGERY AND LIDAR DATA

被引:0
作者
Chen, L. C. [1 ]
Lo, C. Y. [2 ]
机构
[1] Natl Cent Univ, Ctr Space & Remote Sensing, Taoyuan, Taiwan
[2] Natl Cent Univ, Dept Civil Engn, Taoyuan, Taiwan
来源
XXII ISPRS CONGRESS, TECHNICAL COMMISSION III | 2012年 / 39-B3卷
关键词
Aerial Imagery; Building; Detection; LIDAR; Model; Registration; BUILDING MODELS; AERIAL IMAGERY; RECONSTRUCTION; GENERATION; FUSION;
D O I
暂无
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
Aerial imagery and LIDAR points are two important data sources for building reconstruction in a geospatial area. Aerial imagery implies building contours with planimetric features; LIDAR data explicitly represent building geometries using three-dimensional discrete point clouds. Data integration may take advantage of merits from two data sources in building reconstruction and change detection. However, heterogeneous data may contain a relative displacement because of different sensors and the capture time. To reduce this displacement, data registration should be an essential step. Therefore, this investigation proposes an edge-based approach to register these two data sets in three parts: (1) data preprocessing; (2) feature detection; and (3) data registration. The first step rasterizes laser point clouds into a pseudo-grid digital surface model (PDSM), which describes the relief with the original elevation information. The second step implements topological analyses to detect image edges and three-dimensional structure lines from the aerial image and PDSM. These detected features provide the initial positions of building shapes for registration. The third part registers these two data sets in Hough space to compensate for the displacement. Because each building may have prominent geometric structures, the proposed scheme transforms these two groups of edges, and estimates the correspondence by the Hough distribution. The following procedure then iteratively compares two groups of Hough patterns, which are from an aerial image and LIDAR data. This iterative procedure stops when the displacement is within a threshold. The test area is located in Taipei City, Taiwan. DMC system captured the aerial image with 18-cm spatial resolution. The LIDAR data were scanned with a 10-point density per square meter using the Leica ALS50 system. This study proposed a 50 cm spatial resolution of PDSM, which is slightly larger than the point spacing. The experiment selected two buildings to evaluate the performance of the proposed scheme. The manually edited building boundaries from the stereo aerial images are the reference data for validation. Comparisons indicated that the registration procedure could adjust the displacement within 50 cm, which relates to PDSM resolution. These preliminary results also demonstrated the possibility of providing locations for building reconstruction.
引用
收藏
页码:265 / 268
页数:4
相关论文
共 15 条
  • [1] Airborne laser scanning - present status and future expectations
    Ackermann, F
    [J]. ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING, 1999, 54 (2-3) : 64 - 67
  • [2] Automatic detection of residential buildings using LIDAR data and multispectral imagery
    Awrangjeb, Mohammad
    Ravanbakhsh, Mehdi
    Fraser, Clive S.
    [J]. ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING, 2010, 65 (05) : 457 - 467
  • [3] Shaping polyhedral buildings by the fusion of vector maps and lidar point clouds
    Chen, Liang-Chien
    Teo, Tee-Ann
    Kuo, Chih-Yi
    Rau, Jiann-Yeou
    [J]. PHOTOGRAMMETRIC ENGINEERING AND REMOTE SENSING, 2008, 74 (09) : 1147 - 1157
  • [4] 3D Building Model Reconstruction from Multi-view Aerial Imagery and Lidar Data
    Cheng, Liang
    Gong, Jianya
    Li, Manchun
    Liu, Yongxue
    [J]. PHOTOGRAMMETRIC ENGINEERING AND REMOTE SENSING, 2011, 77 (02) : 125 - 139
  • [5] Gruen A., 2001, NEWS CYBERCITY MODEL, P93
  • [6] Generation of Complex Polyhedral Building Models by Integrating Stereo-Aerial Imagery and Lidar Data
    Habib, Ayman F.
    Zhai, Ruifang
    Kim, Changjae
    [J]. PHOTOGRAMMETRIC ENGINEERING AND REMOTE SENSING, 2010, 76 (05) : 609 - 623
  • [7] Lo C.Y., 2011, P 32 AS C REM SENS O
  • [8] Automatic Extraction of Control Points for the Registration of Optical Satellite and LiDAR Images
    Palenichka, Roman M.
    Zaremba, Marek B.
    [J]. IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING, 2010, 48 (07): : 2864 - 2879
  • [9] Knowledge based reconstruction of building models from terrestrial laser scanning data
    Pu, Shi
    Vosselman, George
    [J]. ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING, 2009, 64 (06) : 575 - 584
  • [10] Robust reconstruction of building models from three-dimensional line segments
    Rau, JY
    Chen, LC
    [J]. PHOTOGRAMMETRIC ENGINEERING AND REMOTE SENSING, 2003, 69 (02) : 181 - 188