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Gruen, A.[Armin],
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Gruen, A.,
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Ascona01(93-101).
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0201
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Gruen, A.,
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Gruen, A.,
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Murai, S.[Shunji],
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Sequeira, V.,
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Klein, K.[Konrad],
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0609
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Earlier: A2, A1, A3, A4:
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0508
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0412
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Gamba, P.,
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0002
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Joint analysis of SAR, LIDAR and aerial imagery for simultaneous
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0211
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WWW Version. The combination of three-dimensional laser and radar data for improved
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0602
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PandRS(55), No. 4, November 2000, pp. 230-250.
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0611
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0411
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Ascona01(403-410).
Flexible multi-view stereo from video data.
0201
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3DIM99(14-23).
WWW Version.
9910
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Earlier:
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SMILE98(xx-yy).
See also Self-Calibration and Metric Reconstruction Inspite of Varying and Unknown Intrinsic Camera Parameters.
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Pollefeys, M.,
Van Gool, L.J.,
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ECCV96(I:31-42).
WWW Version. Multiple images (3).
BibRef
9600
Pollefeys, M.,
Verbiest, F.,
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ECCV02(II: 837 ff.).
HTML Version.
0205
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Koch, R.[Reinhard],
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Koch, R.,
3D-Scene Modeling from Image Sequences,
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PDF Version.
0509
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Koch, R.[Reinhard],
Surface Segmentation and Modelling of 3-D Polygonal Objects from
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ICPR96(I: 233-237).
WWW Version.
9608
BibRef
Earlier:
3D Surface Reconstruction from Stereoscopic Image Sequences,
ICCV95(109-114).
WWW Version.
WWW Version. (Univ. Hannover, D)
Triangulation surface model from a dense depth map.
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0803
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0305
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Augmented Reality Using Uncalibrated Video Sequences,
SMILE00(144 ff.).
HTML Version.
0209
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Jordan, M.,
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9811
Cord, M.[Matthieu],
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CVIU(82), No. 2, May 2001, pp. 138-173.
WWW Version.
0108
Adaptive Stereo.
Stereo, Computation. Gradient correlation, contour-adaptive windows with a geodesic weighting,
a multi- resolution coarse to fine scheme, and a
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Boldo, D.[Didier],
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Erikson, M.[Mats],
Automatic Extraction and Classification of Vegetation Areas from High
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SCIA07(858-867).
WWW Version.
0706
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Cord, M.[Matthieu],
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Automatic Extraction and Modelling of Urban Buildings from High
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ISPRSGIS99(187-192).
Compute a DEM using edge information -- the weight is iversely proportional
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Then generate rectangles from the data.
BibRef
9900
Jordan, M.[Michel],
Cord, M.[Matthieu],
Belli, T.[Thomas],
Building Detection from High Resolution Digital Elevation Models in
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PCV02(B: 96).
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Cord, M.,
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IEEE Abstract. IEEE Top Reference.
0210
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Belli, T.,
Cord, M.,
Jordan, M.,
3D Data Reconstruction and Modeling for Urban Scene Analysis,
Ascona01(125-134).
From color images. Model terrain as parametric surface to get above ground
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0201
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Automatic Building Detection Analysing Multiple Curve Data,
Ascona01(151-160).
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0201
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Building Reconstruction from Synthetic Aperature Radar Images and
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Ascona01(281-289).
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0201
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Bolter, R.,
Leberl, F.W.,
Detection and Reconstruction of Human Scale Features from High
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ICPR00(Vol IV: 291-294).
WWW Version.
HTML Version.
0009Buildings from IFSAR
BibRef
Stilla, U.[Uwe],
Soergel, U.[Uwe],
Thoennessen, U.[Ulrich],
Potential and limits of InSAR data for building reconstruction in
built-up areas,
PandRS(58), No. 1, June 2003, pp. 113-123.
WWW Version.
0307
BibRef
Earlier: A2, A3, A1:
Utilization of LIDAR DEM for SAR Image Analysis in Dense Urban Areas,
PCV02(B: 255).
0305
BibRef
Thiele, A.[Antje],
Cadario, E.,
Schulz, K.,
Thoennessen, U.[Ulrich],
Soergel, U.[Uwe],
Building Recognition From Multi-Aspect High-Resolution InSAR Data in
Urban Areas,
GeoRS(45), No. 11, November 2007, pp. 3583-3593.
WWW Version.
0709
BibRef
And:
InSAR Phase Profiles at Building Location,
PIA07(203).
PDF Version.
0711
BibRef
Michaelsen, E.,
Soergel, U.,
Thoennessen, U.,
Potential of Building Extraction from Multi-Aspect High-Resolution
Amplitude SAR Data,
CMRT05(xx-yy).
PDF Version.
0508
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Strecha, C.,
von Hansen, W.[Wolfgang],
Van Gool, L.J.,
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Multi-View Stereo and LIDAR for Outdoor Scene Modelling,
PIA07(167).
PDF Version.
0711
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von Hansen, W.[Wolfgang],
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Thonnessen, U.[Ulrich],
Cluster Analysis and Priority Sorting in Huge Point Clouds for Building
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ICPR06(I: 23-26).
WWW Version.
0609
BibRef
Gross, H.,
Thoennessen, U.,
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CMRT05(xx-yy).
PDF Version.
0508
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Soergel, U.,
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PIA05(xx-yy).
PDF Version.
0509
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Stilla, U.,
Soergel, U.,
Thonnessen, U.[Ulrich],
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Segmentation of LIDAR and InSAR Elevation Data for Building
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Ascona01(297-307).
InSAR can be used, but the detail from LIDAR is superior.
0201
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Michaelsen, E.[Eckart],
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Perceptual grouping for automatic detection of man-made structures in
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PRL(27), No. 4, March 2006, pp. 218-225.
WWW Version.
0602
BibRef
Earlier:
Grouping salient scatterers in InSAR data for recognition of industrial
buildings,
ICPR02(II: 613-616).
WWW Version.
0211SAR images; Building recognition; Perceptual grouping; Production system
BibRef
Stilla, U.,
Geibel, R.,
Repasi, E.,
Generation and Update of 3d-city Models from Maps and Elevation Data,
MVA98(xx-yy).
BibRef
9800
Steinle, E.,
Vögtle, T.,
Automated Extraction and Reconstruction of Buildings in Laser Scanning
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Ascona01(309-318).
Use LIDAR to quickly model buildings and detect changes. Approximage buildings
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0201
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Zingaretti, P.[Primo],
Frontoni, E.[Emanuele],
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Automatic extraction of LIDAR data classification rules,
CIAP07(273-278).
WWW Version.
0709
BibRef
Forlani, G.[Gianfranco],
Nardinocchi, C.[Carla],
Adaptive Filtering of Aerial Laser Scanning Data,
Laser07(130).
PDF Version.
0709
BibRef
Nardinocchi, C.[Carla],
Forlani, G.[Gianfranco],
Building Detection and Roof Extraction in Laser Scanning Data,
Ascona01(319-328).
Remove terrain by smooth interpolation, grow regions to extract elevated
areas. Classify regions as slopes, ridges, outlines. Fit planar surfaces.
0201
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Fuchs, F.,
Building Reconstruction in Urban Environment: A Graph-Based Approach,
Ascona01(205-215).
From DEM, generate roof patches, use roof structure.
0201
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Fujii, K.,
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IEEE Top Reference.
0301
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Rau, J.Y.[Jiann-Yeou],
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Robust Reconstruction of Building Models from Three-Dimensional Line
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PhEngRS(69), No. 2, February 2003, pp. 181-188.
The experimental results indicate that the proposed method can soundly
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and reconstruct building models with up to a 98 percent success rate.
WWW Version.
0304
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Chen, L.C.[Liang-Chien],
Teo, T.A.[Tee-Ann],
Hsieh, C.H.[Chi-Heng],
Rau, J.Y.[Jiann-Yeou],
Reconstruction of Building Models with Curvilinear Boundaries from
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PSIVT06(24-33).
WWW Version.
0612
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Tupin, F.,
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WWW Version.
0307
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Zinger, S.[Sveta],
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0305
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Bretar, F.[Frederic],
Pierrot-Deseilligny, M.[Marc],
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Recognition of Building Roof Facets by Merging Aerial Images and 3D
Lidar Data in a Hierarchical Segmentation Framework,
ICPR06(IV: 5-8).
WWW Version.
0609
See also Digital Terrain Model on Vegetated Areas: Joint Use of Airborne LIDAR Data and Optical Images.
BibRef
Hu, J.H.[Jin-Hui],
You, S.[Suya], and
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0311
Wang, L.[Lu],
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Large-Scale Urban Modeling by Combining Ground Level Panoramic and
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3DPVT06(806-813).
WWW Version.
0606
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Hu, J.H.[Jin-Hui],
You, S.[Suya],
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Integrating LiDAR, Aerial Image and Ground Images for Complete Urban
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3DPVT06(184-191).
WWW Version.
0606
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Rottensteiner, F.[Franz],
Automatic Generation of High-Quality Building Models from Lidar Data,
IEEE_CGA(23), No. 6, November/December, 2003, pp. 42-50.
HTML Version.
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0311
Rottensteiner, F.[Franz],
Briese, C.[Christian],
A New Method for Building Extraction in Urban Areas from
High-Resolution LIDAR Data,
PCV02(A: 295).
0305
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Rottensteiner, F.[Franz],
Consistent Estimation of Building Parameters Considering
Geometric Regularities by Soft Constraints,
PCV06(xx-yy).
PDF Version.
0609
BibRef
Rottensteiner, F.,
Building Change Detection from Digital Surface Models and
Multi-Spectral Images,
PIA07(145).
PDF Version.
0711
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Lu, Y.H.[Yi Hui],
Trinder, J.C.[John C.],
Kubik, K.[Kurt],
Automatic Building Detection Using the Dempster-Shafer Algorithm,
PhEngRS(72), No. 4, April 2006, pp. 395-404.
WWW Version.
0610A strategy for the automatic detection of buildings from aerial images using combined image analysis and data fusion.
BibRef
Rottensteiner, F.,
Trinder, J.C.,
Clode, S.P.,
Kubik, K.,
Lovell, B.,
Building detection by Dempster-Shafer fusion of lidar data and
multispectral aerial imagery,
ICPR04(II: 339-342).
WWW Version.
0409
BibRef
Rottensteiner, F.[Franz],
Trinder, J.[John],
Clode, S.P.[Simon P.],
Kubik, K.[Kurt],
Building detection by fusion of airborne laser scanner data and
multi-spectral images: Performance evaluation and sensitivity analysis,
PandRS(62), No. 2, June 2007, pp. 135-149.
WWW Version.
0709Building detection; Airborne laser scanning; Data fusion; Classification;
Evaluation
See also Detection and Vectorization of Roads from Lidar Data.
BibRef
Clode, S.P.[Simon P.],
Rottensteiner, F.[Franz],
Kootsookos, P.[Peter],
Improving City Model Determination by using Road Detection from LIDAR
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CMRT05(xx-yy).
PDF Version.
0508
BibRef
Ma, R.J.[Rui-Jin],
Meyer, W.[Will],
DTM Generation and Building Detection from Lidar Data,
PhEngRS(71), No. 7, July 2005, pp. 847-854.
Describing a method to perform DTM generation and building detection
from lidar range data through a segmentation process, and a method to
conduct boundary regularization.
WWW Version.
0509
BibRef
Simonetto, E.,
Oriot, H.,
Garello, R.,
Rectangular building extraction from stereoscopic airborne Radar images,
GeoRS(43), No. 10, October 2005, pp. 2386-2395.
WWW Version.
0510
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Oriot, H.,
Statistical Snakes for Building Extraction from Stereoscopic Aerial
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PIA05(xx-yy).
PDF Version.
0509
BibRef
Vestri, C.[Christophe],
Using range data in automatic modeling of buildings,
IVC(24), No. 7, July 2006, pp. 709-719.
WWW Version.
0608Building modeling; DEM; Robust estimation;
Planar patch segmentation; Polygonalization; Orthogonalization; Aerial images
BibRef
Vestri, C.[Christophe],
Devernay, F.,
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IEEE Abstract. IEEE Top Reference.
0110From the DEM, extract buildings. Mostly, find the regions above the
ground plane, find planar surfaces, group them, make the boundaries
oong straight lines.
BibRef
Zhang, K.,
Yan, J.,
Chen, S.C.,
Automatic Construction of Building Footprints From Airborne LIDAR Data,
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Chapter on Cartography, Aerial Images, Remote Sensing, Buildings, Roads, Terrain, ATR continues in
Roof Structure, 3-D .