Exploration of algorithms and implementations for efficient 3D-HEVC depth map encoding

3D High Efficiency Video Coding (3D-HEVC) standard was the pioneer standard to use depth map coding along with texture coding to achieve high compression ratio and qual- ity in 3D videos. Depth map coding introduced new tools requiring more computational effort compared to texture coding, implying n...

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Detalles Bibliográficos
Autor: Sanchez, Gustavo Freitas
Tipo de recurso: tesis doctoral
Estado:Versión publicada
Fecha de publicación:2019
País:Brasil
Institución:Pontifícia Universidade Católica do Rio Grande do Sul (PUCRS)
Repositorio:Biblioteca Digital de Teses e Dissertações da PUC_RS
Idioma:inglés
OAI Identifier:oai:tede2.pucrs.br:tede/8651
Acceso en línea:http://tede2.pucrs.br/tede2/handle/tede/8651
Access Level:acceso abierto
Palabra clave:3D-HEVC
Depth Maps Coding
Intra-Frame Prediction
Inter-Frame Prediction
Encoding Effort Reduction
Codificação de Mapas de Profundidade
Predição Intra-Quadro
Predição Inter-Quadro
Minimização do Esforço Computacional
CIENCIA DA COMPUTACAO::TEORIA DA COMPUTACAO
Descripción
Sumario:3D High Efficiency Video Coding (3D-HEVC) standard was the pioneer standard to use depth map coding along with texture coding to achieve high compression ratio and qual- ity in 3D videos. Depth map coding introduced new tools requiring more computational effort compared to texture coding, implying new challenges to encode 3D videos efficiently, espe- cially when the encoding is performed on embedded systems or requiring real-time process- ing. This Thesis proposes algorithms and implementations to improve the depth map coding in the 3D-HEVC standard. The main contributions are divided into three parts. (i) Reduc- tion of intra-frame coding effort, where four new algorithms were designed based on a deep analysis of the time distribution and modes used in the coding process. (ii) Enhancement of bipartition modes, exploring (a) the encoding effort control of the bipartition modes, (b) the parallelism for Intra_Wedge mode, (c) the compression of patterns for wedgelet storage reduction, and d) the hardware design for the bipartition modes decoding. (iii) Reduction of inter-frame coding effort, where three new algorithms were designed to speed up the coding of P- and B-frames. The set of algorithms and techniques developed can be applied indi- vidually or combined to improve the use of computational resources when encoding depth maps.