John Peter Nilsson; Zandra Ahl; Aglert Kajsa; Thomas Elovsson; Jennie Fahlström; Anna Hesselbom; Jan Hietala Sveriges Allmänna Konstförening (2018) Kovakantinen kirja
Daniel Schenström; Viktor Matiesen; Sebastian Sandberg; Thomas Fels; Magic Frigren; Jan Hoff; Daniel Lenneér; Simon Petersen Udda Apa AB (2023) Pehmeäkantinen kirja
Dennis Bohnen; Sven Büchner; Jan Dirk Jensen; Thomas Kohns; Lars Menzel; Mario Preller; Dirk Ripsam; Andreas Wasielewski Cornelsen Verlag GmbH (2017) Pehmeäkantinen kirja
Wolfgang Banzhaf; Thomas Christaller; Peter Dittrich; Kim, Jan, T.; Jens Ziegler Springer-Verlag Berlin and Heidelberg GmbH & Co. KG (2003) Pehmeäkantinen kirja
Thomas Denk; Carsten Anckar; Ali Abdelzadeh; Idris Waysi; Jan Joel Andersson; Staffan Andersson; Kimmo Elo; Carina Gunnarson Studentlitteratur AB (2022) Pehmeäkantinen kirja
De Gruyter Sivumäärä: 702 sivua Asu: Kovakantinen kirja Painos: 2nd ed. Julkaisuvuosi: 2013, 15.11.2013 (lisätietoa) Kieli: Englanti Tuotesarja:De Gruyter Textbook
This is the second edition of the established guide to close-range photogrammetry which uses accurate imaging techniques to analyse the three-dimensional shape of a wide range of manufactured and natural objects.
After more than 20 years of use, close-range photogrammetry, now for the most part entirely digital, has become an accepted, powerful and readily available technique for engineers, scientists and others who wish to utilise images to make accurate 3D measurements of complex objects. Here they will find the photogrammetric fundamentals, details of system hardware and software, and broad range of real-world applications in order to achieve this.
Following the introduction, the book provides fundamental mathematics covering subjects such as image orientation, digital imaging processing and 3D reconstruction methods, as well as a discussion of imaging technology, including targeting and illumination, and its implementation in hardware and software. It concludes with an overview of photogrammetric solutions for typical applications in engineering, manufacturing, medical science, architecture, archaeology and other fields.
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