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      Multiple View Geometry in Computer Vision

      4 in stock

      Firm sale: non returnable item
      SKU 9780521540513 Categories ,
      Select Guide Rating
      The theory and practice of scene reconstruction are described in detail in a unified framework. The new edition features an extended introduction covering the key ideas in the book (which itself has been updated with additional examples and appendices) and significant new resu...

      £86.99

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      Description

      Product ID:9780521540513
      Product Form:Paperback / softback
      Country of Manufacture:GB
      Title:Multiple View Geometry in Computer Vision
      Authors:Author: Andrew Zisserman, Richard Hartley
      Page Count:670
      Subjects:Robotics, Robotics, Computer vision, Computer vision
      Description:Select Guide Rating
      The theory and practice of scene reconstruction are described in detail in a unified framework. The new edition features an extended introduction covering the key ideas in the book (which itself has been updated with additional examples and appendices) and significant new results which have appeared since the first edition.
      A basic problem in computer vision is to understand the structure of a real world scene given several images of it. Techniques for solving this problem are taken from projective geometry and photogrammetry. Here, the authors cover the geometric principles and their algebraic representation in terms of camera projection matrices, the fundamental matrix and the trifocal tensor. The theory and methods of computation of these entities are discussed with real examples, as is their use in the reconstruction of scenes from multiple images. The new edition features an extended introduction covering the key ideas in the book (which itself has been updated with additional examples and appendices) and significant new results which have appeared since the first edition. Comprehensive background material is provided, so readers familiar with linear algebra and basic numerical methods can understand the projective geometry and estimation algorithms presented, and implement the algorithms directly from the book.
      Imprint Name:Cambridge University Press
      Publisher Name:Cambridge University Press
      Country of Publication:GB
      Publishing Date:2004-03-25

      Additional information

      Weight1142 g
      Dimensions246 × 175 × 30 mm