Pattern Recognition: Proceedings of the 10th International Conference on ..., ICPR'90, Atlantic City, New Jersey, USA, 16-21 June, 1990. Conference A: Computer vision and Conference B: Pattern recognition systems and applications
IEEE Computer Society Press, 1990 - Computer architecture - 969 pages
Proceedings of the 10th International Conference on [title], held in Atlantic City, June 1990, and sponsored by the International Association for Pattern Recognition. Volume 1 contains the proceedings of Conference A, on computer vision, and Conference B, on pattern recognition systems and applications. Volume 2 contains the proceedings of Conference C, on image, speech, and signal processing, and Conference D, on computer architecture for vision in pattern recognition. Volume 1 is available individually at $90, volume 2 at $70. No subject index. Acidic paper. Annotation copyrighted by Book News, Inc., Portland, OR.
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Harmonic Models of Shape Transformations in Digital Images and Patterns
Object Recognition Based on Characteristic View Classes
Nonlinear Shape Restoration by Transformation Models
48 other sections not shown
algorithm analysis angle applied approach axis boundary camera classification component Computer Vision constraint contour coordinate corresponding curvature curve cyclic motion defined depth described determined direction disparity edge detection edge focusing equation error extracted Figure filter frame function Gaussian geometric given global gradient Gray code Hough transform hypotheses IEEE IEEE Trans image plane Image Processing image sequence input iterations Kalman filter label line segments linear matching matrix measure method minimization motion estimation motion parameters node noise object obtained occlusion optical flow optimal orientation pair parallel Pattern Recognition pixel planar points position principal curvature problem Proc projection quadtree region representation robot rotation sample scale-space scene shape shown smoothing solution space spatial step stereo structure structure from motion surface normal technique texture tion trajectory transformation values vector velocity vertices visual