Argomenti del programma: 0. Introduction. 1. Camera sensors: transduction, optics, geometry, distortion 2. Basics on Projective geometry: modelling basic primitives (points, lines, planes, conic sections, quadric surfaces) and projective spatial transformations and projections. 3. Camera geometry, and single view analysis: calibration, image rectification, localization of 3D models. 4.
Argomenti del programma: 0. Introduction. 1. Camera sensors: transduction, optics, geometry, distortion 2. Basics on Projective geometry: modelling basic primitives (points, lines, planes, conic sections, quadric surfaces) and projective spatial transformations and projections. 3. Camera geometry, and single view analysis: calibration, image rectification, localization of 3D models. 4.
Argomenti del programma: 0. Introduction. 1. Camera sensors: transduction, optics, geometry, distortion 2. Basics on Projective geometry: modelling basic primitives (points, lines, planes, conic sections, quadric surfaces) and projective spatial transformations and projections. 3. Camera geometry, and single view analysis: calibration, image rectification, localization of 3D models. 4.
Argomenti del programma: 0. Introduction. 1. Camera sensors: transduction, optics, geometry, distortion 2. Basics on Projective geometry: modelling basic primitives (points, lines, planes, conic sections, quadric surfaces) and projective spatial transformations and projections. 3. Camera geometry, and single view analysis: calibration, image rectification, localization of 3D models. 4.
Argomenti del programma: 0. Introduction. 1. Camera sensors: transduction, optics, geometry, distortion 2. Basics on Projective geometry: modelling basic primitives (points, lines, planes, conic sections, quadric surfaces) and projective spatial transformations and projections. 3. Camera geometry, and single view analysis: calibration, image rectification, localization of 3D models. 4.