This chapter presents 3D formats and coding techniques for stereoscopic vision as well as for multiview examples. With a view to improving performance and increasing functionality in current formats, MPEG has recently undergone a new normalization phase for 3D video coding (3DVC). Three approaches are currently used in normalization. The first is a backward compatible extension of multiview video coding (MVC). Here, a second stream encodes the depth information independently of the stream representing textural information. The second approach involves a backward compatible extension of H.264/MPEG-4 AVC, where a basic video stream encodes texture information of a view with H.264/MPEG-4 AVC. Finally, a third approach uses a backward compatible extension of high efficiency video coding (HEVC) in which a simple multiview extension of HEVC is made using a schema identical to MVC.

Multiview Video Coding (MVC)

Cagnazzo M.;
2013

Abstract

This chapter presents 3D formats and coding techniques for stereoscopic vision as well as for multiview examples. With a view to improving performance and increasing functionality in current formats, MPEG has recently undergone a new normalization phase for 3D video coding (3DVC). Three approaches are currently used in normalization. The first is a backward compatible extension of multiview video coding (MVC). Here, a second stream encodes the depth information independently of the stream representing textural information. The second approach involves a backward compatible extension of H.264/MPEG-4 AVC, where a basic video stream encodes texture information of a view with H.264/MPEG-4 AVC. Finally, a third approach uses a backward compatible extension of high efficiency video coding (HEVC) in which a simple multiview extension of HEVC is made using a schema identical to MVC.
2013
3D Video: From Capture to Diffusion
9781118761915
9781848215078
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/3469388
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