Computer vision : models, learning, and inference

"This modern treatment of computer vision focuses on learning and inference in probabilistic models as a unifying theme. It shows how to use training data to learn the relationships between the observed image data and the aspects of the world that we wish to estimate, such as the 3D structure o...

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Bibliographic Details
Main Author: Prince, Simon J. D. [ (Simon Jeremy Damion)] , 1972- (Author)
Format: Book
Language:English
Published: Cambridge : Cambridge University Press , c2012
Subjects:

MARC

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008 130530s2012 enk eng
020 |a 1107011795 (hardback : alk. paper) 
020 |a 9781107011793 (hardback : alk. paper) 
050 0 0 |a TA1634   |b .P75 2012 
090 0 0 |a TA1634   |b .P75 2012 
100 1 |a Prince, Simon J. D. [  |q (Simon Jeremy Damion)] ,   |d 1972- ,   |e author 
245 1 0 |a Computer vision :   |b models, learning, and inference   |c Simon J.D. Prince 
260 |a Cambridge :   |b Cambridge University Press ,   |c c2012 
300 |a xviii, 580 p. :   |b ill. (some col.) ;   |c 26 cm. 
504 |a Includes bibliographical references (p. [533]-566) and index 
505 0 |a 1. Probability -- 2. Machine learning for machine vision -- 3. Connecting local models -- 4. Preprocessing -- 5. Models for geometry -- 6. Models for vision -- 7. Appendices 
520 |a "This modern treatment of computer vision focuses on learning and inference in probabilistic models as a unifying theme. It shows how to use training data to learn the relationships between the observed image data and the aspects of the world that we wish to estimate, such as the 3D structure or the object class, and how to exploit these relationships to make new inferences about the world from new image data. With minimal prerequisites, the book starts from the basics of probability and model fitting and works up to real examples that the reader can implement and modify to build useful vision systems. Primarily meant for advanced undergraduate and graduate students, the detailed methodological presentation will also be useful for practitioners of computer vision. [bullet] Covers cutting-edge techniques, including graph cuts, machine learning and multiple view geometry [bullet] A unified approach shows the common basis for solutions of important computer vision problems, such as camera calibration, face recognition and object tracking [bullet] More than 70 algorithms are described in sufficient detail to implement [bullet] More than 350 full-color illustrations amplify the text [bullet] The treatment is self-contained, including all of the background mathematics [bullet] Additional resources at www.computervisionmodels.com" -- Provided by publisher 
650 0 |a Computer vision 
999 |a 1000158997   |b Book   |c OPEN SHELF (30 DAYS)   |e Gong Badak Campus