The book offers a thorough introduction to machine vision. It is organized in two parts. The first part covers the image acquisition, which is the crucial component of most automated visual inspection systems. All important methods are described in great detail and are presented with a reasoned structure. The second part deals with the modeling and processing of image signals and pays particular regard to methods, which are relevant for automated visual inspection.
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The first part covers the image acquisition, which is the crucial component of most automated visual inspection systems. The second part deals with the modeling and processing of image signals and pays particular regard to methods, which are relevant for automated visual inspection.
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Introduction.- Part I Image Acquisition: Light.- Optical Imaging.- Radiometry.- Color.- Sensors for Image Acquisition.- Methods for Image Acquisition.- Part II Image Processing: Image Signals.- Preprocessing and Image Enhancement.- Image Restoration.- Segmentation.- Morphological Image Processing.- Texture Analysis.- Detection.- Image Pyramids, Wavelet Transform and Multiresolution Analysis.- Mathematical Foundations.- The Fourier Transform.
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The book offers a thorough introduction to machine vision. It is organized in two parts. The first part covers the image acquisition, which is the crucial component of most automated visual inspection systems. All important methods are described in great detail and are presented with a reasoned structure. The second part deals with the modeling and processing of image signals and pays particular regard to methods, which are relevant for automated visual inspection.
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The reader is supposed to get a thorough understanding of the interaction of the presented methods All relevant conclusions are provided with at least a sketch of proof The reader will be provided with the “big picture” of the field
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Produktdetaljer

ISBN
9783662477939
Publisert
2015-10-05
Utgiver
Vendor
Springer-Verlag Berlin and Heidelberg GmbH & Co. K
Høyde
235 mm
Bredde
155 mm
Aldersnivå
Professional/practitioner, P, 06
Språk
Product language
Engelsk
Format
Product format
Innbundet

Biographical note

Prof. Dr.-Ing. habil. Jürgen Beyerer received his doctoral degree in 1994 by working in the field of image processing and especially in the subject of texture analysis. He habilitated in 1994 in the field of measurement technology and ran a small business for five years, which developed innovative automated visual inspection systems for industrial applications. Since 2004, Prof. Beyerer is the director of the Fraunhofer Institute of Optronics, System Technologies and Image Exploitation in Karlsruhe, which is mainly focused on the field of image processing. Simultaneously, he is holding the chair `Vision and Fusion Laboratory’ at the Karlsruhe Institute of Technology (KIT) which performs research in the fields of image acquisition and image processing.

Prof. Dr.-Ing. Fernando Puente León: received the Dipl.-Ing. degree in electrical engineering and the Ph.D. degree with a thesis on machine vision from the University of Karlsruhe, Germany, in 1994 and 1999, respectively. From 2001 to 2002, he was with the
company DS2, Spain. In 2003, he became a full professor at the Department of Electrical Engineering and Information Technology of the Technical University of Munich, Germany. Since 2008, he is a professor with the Department of Electrical Engineering and Information Technology of Karlsruhe Institute of Technology, where he also heads the Institute of Industrial Information Technology. His research interests include image processing, machine vision, information fusion, measurement technology, and pattern
recognition.

Dr.-Ing. Christian Frese has been engaged in the field of computer vision and image processing since 2005. He has been actively participating in several research projects concerned with multi-view stereo reconstruction, range image processing, image fusion,
feature extraction and image-based classification. He co-authored more than 25 scientific publications related to cognitive automobiles, robotics, and image

processing.