Computational photography

Digital image capture and processing techniques that use digital computation instead of optical processes

Computational photography refers to digital image capture and processing techniques that use digital computation instead of optical processes. Computational photography can improve the capabilities of a camera, or introduce features that were not possible at all with film-based photography, or reduce the cost or size of camera elements.

Nº Q5157334 ★

Commune · Histoire

Computational photography

Digital image capture and processing techniques that use digital computation instead of optical processes

Texte en anglais

Computational photography refers to digital image capture and processing techniques that use digital computation instead of optical processes. Computational photography can improve the capabilities of a camera, or introduce features that were not possible at all with film-based photography, or reduce the cost or size of camera elements.

Dernier prix

—

Prix plancher

—

Médiane 7 j

—

Ventes 30 j

0

Fourchette 30 j

—

En circulation

0

Cours

Voir le tableau
Datemédiane MinMaxventes

Historique des ventes

Dernière vente
—
Moyenne 30 j
—
Plus bas 30 j
—
Plus haut 30 j
—
Ventes 7 j
0
Ventes 30 j
0

Aucune vente pour l'instant.

Ventes anonymes : ni acheteur ni vendeur. Les chiffres ne comptent que les ventes entre joueurs.

Sur Wikipédia

Texte en anglais Pas encore d'article dans ta langue : extrait en anglais.

Computational photography refers to digital image capture and processing techniques that use digital computation instead of optical processes. Computational photography can improve the capabilities of a camera, or introduce features that were not possible at all with film-based photography, or reduce the cost or size of camera elements. Examples of computational photography include in-camera computation of digital panoramas, high-dynamic-range images, and light field cameras. Light field cameras use novel optical elements to capture three-dimensional scene information, which can then be used to produce 3D images, enhanced depth-of-field, and selective de-focusing (or "post focus"). Enhanced depth-of-field reduces the need for mechanical focusing systems. All of these features use computational imaging techniques. The definition of computational photography has evolved to cover a number of subject areas in computer graphics, computer vision, and applied optics. These areas are given below, organized according to a taxonomy proposed by Shree K. Nayar. Within each area is a list of techniques, and for each technique, one or two representative papers or books are cited. Deliberately omitted from the taxonomy are image processing (see also digital image processing) techniques applied to traditionally captured images to produce better images. Examples of such techniques are image scaling, dynamic range compression (i.e. tone mapping), color management, image completion (a.k.a. inpainting or hole filling), image compression, digital watermarking, and artistic image effects. Also omitted are techniques that produce range data, volume data, 3D models, 4D light fields, 4D, 6D, or 8D BRDFs, or other high-dimensional image-based representations. Epsilon photography is a sub-field of computational photography.

Texte : Wikipédia en anglais, CC BY-SA 4.0. · Image : The original uploader was Glogger at English Wikipedia. (CC BY-SA 3.0) ·

Cartes voisines

Voir la fiche

Confirmation