Implementation of the 4D prediction mode in the JPEG Pleno part 2 reference software

DSpace Repository

A- A A+

Implementation of the 4D prediction mode in the JPEG Pleno part 2 reference software

Show simple item record

dc.contributor Universidade Federal de Santa Catarina. pt_BR
dc.contributor.advisor Seidel, Ismael
dc.contributor.author Russi, Gustavo
dc.date.accessioned 2026-07-11T13:39:00Z
dc.date.available 2026-07-11T13:39:00Z
dc.date.issued 2026-07-01
dc.identifier.uri https://repositorio.ufsc.br/handle/123456789/274044
dc.description TCC (graduação) - Universidade Federal de Santa Catarina, Centro Tecnológico, Ciências da Computação. pt_BR
dc.description.abstract A Light Field (LF) is an image modality captured from multiple viewpoints and combined into a single representation, providing visual capabilities that are not available in traditional pho- tography and video modalities. As with conventional two-dimensional images, storing raw LFs is impractical due to the enormous amount of data involved, making the adoption of compres- sion techniques necessary. Part 2 of the JPEG Pleno standard defines two coding modes for LFs: the 4DTM and the 4DPM. While the 4DTM exploits redundancies through the use of a four-dimensional Discrete Cosine Transform (DCT) and block partitioning, the 4DPM employs depth information and camera parameters to predict intermediate views from a subset of ref- erence views. Currently, two reference software implementations are available for the JPEG Pleno standard: the JPLM, which is publicly available but only supports the 4DTM, and the BVBP, which is available only as part of the materials accompanying Part 4 of the JPEG Pleno standard. In this context, the objective of this work was to implement the 4DPM coding mode in the JPLM software, extending the only publicly available reference implementation of JPEG Pleno to support both LF coding modes defined by the standard. This work implemented the complete mandatory 4DPM encoding pipeline in the JPLM software, including configuration handling, codestream generation, and intermediate view prediction. Experimental validation demonstrated that the proposed encoder produces standard-compliant codestreams that can be successfully decoded by the BVBP reference decoder. The generated reconstructions achieved satisfactory visual quality when accurate configuration files and camera geometry parameters were available. However, the experiments also revealed that coding performance is highly sen- sitive to configuration generation and bitrate allocation strategies, and reconstruction artifacts may still occur in some decoded views. Furthermore, the optional sparse-filtering stage defined by the standard was not implemented and is therefore left for future work. pt_BR
dc.format.extent 81 f. pt_BR
dc.language.iso eng pt_BR
dc.publisher Florianópolis, SC. pt_BR
dc.rights Open Access.
dc.subject Light fields pt_BR
dc.subject JPEG Pleno pt_BR
dc.subject Visual signal compression pt_BR
dc.subject Prediction mode pt_BR
dc.subject 4DPM pt_BR
dc.title Implementation of the 4D prediction mode in the JPEG Pleno part 2 reference software pt_BR
dc.type TCCgrad pt_BR


Files in this item

Files Size Format View Description
TCC_II_GustavoRussi_final_pdfa.pdf 4.831Mb PDF View/Open TCC

This item appears in the following Collection(s)

Show simple item record

Search DSpace


Browse

My Account

Statistics

Compartilhar