Advanced Procrustes Analysis Models in Photogrammetric Computer Vision Advanced Procrustes Analysis Models in Photogrammetric Computer Vision
CISM International Centre for Mechanical Sciences

Advanced Procrustes Analysis Models in Photogrammetric Computer Vision

Fabio Crosilla und andere
    • 87,99 €
    • 87,99 €

Beschreibung des Verlags

This book gives a comprehensive view of the developed procrustes models, including the isotropic, the generalized and the anisotropic variants. These represent original tools to perform, among others, the bundle block adjustment and the global registration of multiple 3D LiDAR point clouds. Moreover, the book also reports the recently derived total least squares solution of the anisotropic Procrustes model, together with its practical application in solving the exterior orientation of one image. The book is aimed at all those interested in discovering valuable innovative algorithms for solving various photogrammetric computer vision problems. In this context, where functional models are non-linear, Procrustean methods prove to be powerful since they do not require any linearization nor approximated values of the unknown parameters, furnishing at the same time results comparable in terms of accuracy with those given by the state-of-the-art methods.

GENRE
Wissenschaft und Natur
ERSCHIENEN
2019
28. Februar
SPRACHE
EN
Englisch
UMFANG
183
Seiten
VERLAG
Springer International Publishing
ANBIETERINFO
Springer Science & Business Media LLC
GRÖSSE
24
 MB
Vehicle Dynamics, Control and Design Vehicle Dynamics, Control and Design
2025
Inverse Problems for Mechanical Systems Inverse Problems for Mechanical Systems
2025
Management Strategies and Resilience Against NaTech Events Management Strategies and Resilience Against NaTech Events
2025
Interfacial Flows—The Power and Beauty of Asymptotic Methods Interfacial Flows—The Power and Beauty of Asymptotic Methods
2025
Tensegrity Systems Tensegrity Systems
2025
Model Order Reduction for Design, Analysis and Control of Nonlinear Vibratory Systems Model Order Reduction for Design, Analysis and Control of Nonlinear Vibratory Systems
2024