Národní úložiště šedé literatury Nalezeno 2 záznamů.  Hledání trvalo 0.00 vteřin. 
Real-time camera pose estimation for augmented reality
Szentandrási, István ; Slavík,, Pavel (oponent) ; Liarokapis,, Fotis (oponent) ; Herout, Adam (vedoucí práce)
Fiduciary markers form the base for camera pose estimation for many Augmented Reality applications, when a fast and robust solution is required. In this thesis an efficient marker-based camera pose estimation is outlined for Uniform Marker Fields with several real-world applications. The proposed algorithm is highly efficient and works in real time even on multiple platforms, including mid-range smartphones. On-screen markers are used to establish relative pose between devices for task-migration and information reaccess. In movie production, the described camera pose estimation as part of the chromakeying process, provides content creators real-time preview. Results show that the described detection algorithm performs comparably to other marker-based methods and it is several times faster. The implemented applications provide viable - cheaper and faster - alternative to existing solutions.
Real-time camera pose estimation for augmented reality
Szentandrási, István ; Slavík,, Pavel (oponent) ; Liarokapis,, Fotis (oponent) ; Herout, Adam (vedoucí práce)
Fiduciary markers form the base for camera pose estimation for many Augmented Reality applications, when a fast and robust solution is required. In this thesis an efficient marker-based camera pose estimation is outlined for Uniform Marker Fields with several real-world applications. The proposed algorithm is highly efficient and works in real time even on multiple platforms, including mid-range smartphones. On-screen markers are used to establish relative pose between devices for task-migration and information reaccess. In movie production, the described camera pose estimation as part of the chromakeying process, provides content creators real-time preview. Results show that the described detection algorithm performs comparably to other marker-based methods and it is several times faster. The implemented applications provide viable - cheaper and faster - alternative to existing solutions.

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