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Machine vision and Image recognition / edited by Jovan Pehcevski

By: Language: eng. Publication details: Oakville Arcler Press c2020Edition: 1st edDescription: xxiv, 321 p. : ill. ; 24 cmISBN:
  • 9781774073551
Subject(s): DDC classification:
  • 006.37  PEH
Summary: Machine Vision and Image Recognition informs the readers about the behavior fusion for visually guided service robots and the approaches and limitation in achieving vision in machine. The readers are informed about the use of beacon tracker for dynamic omnidirectional vision localization and explained the QoE assessment of will transmission. They are explained about the concepts that are there to be learnt in neuromorphic vision systems and told about an automatic assembling system for sealing rings. Also discussed in the book is the design of omnidirectional tilt sensor, modelling and positioning system in sand casting process, raising sow and procreating of processing, augmented reality applications, 3D autonomous navigation line, all of which and even more is based on machine vision.
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Item type Current library Call number Status Barcode
Reference Reference Anna Centenary Library 3RD FLOOR, A WING 006.37 PEH (Browse shelf(Opens below)) Not for loan 701350

Includes bibliographies and index

Machine Vision and Image Recognition informs the readers about the behavior fusion for visually guided service robots and the approaches and limitation in achieving vision in machine. The readers are informed about the use of beacon tracker for dynamic omnidirectional vision localization and explained the QoE assessment of will transmission. They are explained about the concepts that are there to be learnt in neuromorphic vision systems and told about an automatic assembling system for sealing rings. Also discussed in the book is the design of omnidirectional tilt sensor, modelling and positioning system in sand casting process, raising sow and procreating of processing, augmented reality applications, 3D autonomous navigation line, all of which and even more is based on machine vision.

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