Wartungsarbeiten: ILIAS Update

Mi 29. Juli 2026 06:00 - 21:00 Uhr | Aufgrund von Wartungsarbeiten an den ILIAS-Servern (Update auf ILIAS Version 10) wird Ihnen ILIAS während des Zeitraums nicht zur Verfügung stehen. Kontakt: ilias@unibe.ch

Wartungsarbeiten: Opencast, Podcasts & Tobira

Mi 19. August 2026 08:00 - 16:00 Uhr | Aufgrund von Wartungsarbeiten an den Opencast-Servern werden Ihnen Podcasts, Opencast-Videos und Tobira nicht zur Verfügung stehen. Kontakt: www.podcast.unibe.ch

HS2023: 31062/61062 Computer Vision

This course covers fundamental topics in computer vision. The course will provide an introduction to image formation, image processing, feature detection, segmentation, multiple view geometry and 3D reconstruction, motion.

General Information

Course description
This course covers fundamental topics in computer vision. The course will provide an introduction to image formation, image processing, feature detection, segmentation, multiple view geometry and 3D reconstruction.
Syllabus
Syllabus Material (preliminary -- subject to updates)

Introduction & projection models (also see book: Forsyth & Ponce Ch 1 & 2)
Camera models, image filtering (also see book: Forsyth & Ponce Ch 1 & 2, Ch. 7 & 8)
Edges, deblurring, denoising, numerical methods (also see book: Forsyth & Ponce Ch. 7 & 8)
Photometric stereo & shading (book: Forsyth & Ponce Ch 4 & 5)
Tracking, optical flow (book: Forsyth & Ponce Ch 17)
Interest points detection (book: Grauman & Leibe)
Registration and fitting (book: Forsyth & Ponce Ch 15)
Epipolar geometry & stereo (book: Forsyth & Ponce Ch 10 & 11)
Multiview stereo and structure from motion (book: Forsyth & Ponce Ch 12 & 13)
Bayesian methods in imaging (slides only)
Clustering and segmentation (book: Forsyth & Ponce Ch 14, 15 & 16)

Additional reading:
• Computer Vision : A Modern Approach, David A. Forsyth and Jean Ponce.
• Algorithms and Applications, Rick Szeliski.
Target Group
Upon successful completion of this class, you will be able to:
1) Understand how cameras capture images of a scene
2) Implement and use: algorithms for image processing such as image filtering and image segmentation;
algorithms for 3D reconstruction (e.g., from stereo systems)
3) Describe the mathematics underpinning each method and know how to adapt it to other scenarios

General

Language
English
Copyright
All rights reserved

Contact

Consultation
Kontaktangaben: Dr. Andreas Humm, Universität Freiburg, Departement für Informatik, Bd de Pérolles 90, CH-1700 Freiburg
Tel.: +41 26 300 92 89, andreas.humm@unifr.ch

Availability

Access
Unlimited
Admittance
You can join this course directly.
Registration Period
Unlimited

Personal Data Visible to Course Administrators

Data Types of the Personal Profile
Username
First Name
Last Name
E-Mail