Design Space Exploration at Frame-Level for Joint Decoding Energy and Quality Optimization in VVC

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Stürzenhofäcker, Teresa, Kränzler, Matthias, Herglotz, Christian, Kaup, André
Natura: Preprint
Pubblicazione: 2024
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866909331468845056
author Stürzenhofäcker, Teresa
Kränzler, Matthias
Herglotz, Christian
Kaup, André
author_facet Stürzenhofäcker, Teresa
Kränzler, Matthias
Herglotz, Christian
Kaup, André
contents In the pursuit of a reduced energy demand of VVC decoders, it was found that the coding tool configuration has a substantial influence on the bit rate efficiency and the decoding energy demand. The Advanced Design Space Exploration algorithm as proposed in the literature, can derive coding tool configurations that provide optimal trade-offs between rate and energy efficiency. Yet, some trade-off points in the design space cannot be reached with the state-of-the-art methodology, which defines coding tools for an entire bitstream. This work proposes a novel, granular adjustment of the coding tool usage in VVC. Consequently, the optimization algorithm is adjusted to explore coding tool configurations that operate on frame-level. Moreover, new optimization criteria are introduced to focus the search on specific bit rates. As a result, coding tool configurations are obtained which yield so far inaccessible trade-offs between bit rate efficiency and decoding energy demand for VVC-coded sequences. The proposed methodology extends the design space and enhances the continuity of the Pareto front.
format Preprint
id arxiv_https___arxiv_org_abs_2410_00533
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Design Space Exploration at Frame-Level for Joint Decoding Energy and Quality Optimization in VVC
Stürzenhofäcker, Teresa
Kränzler, Matthias
Herglotz, Christian
Kaup, André
Image and Video Processing
In the pursuit of a reduced energy demand of VVC decoders, it was found that the coding tool configuration has a substantial influence on the bit rate efficiency and the decoding energy demand. The Advanced Design Space Exploration algorithm as proposed in the literature, can derive coding tool configurations that provide optimal trade-offs between rate and energy efficiency. Yet, some trade-off points in the design space cannot be reached with the state-of-the-art methodology, which defines coding tools for an entire bitstream. This work proposes a novel, granular adjustment of the coding tool usage in VVC. Consequently, the optimization algorithm is adjusted to explore coding tool configurations that operate on frame-level. Moreover, new optimization criteria are introduced to focus the search on specific bit rates. As a result, coding tool configurations are obtained which yield so far inaccessible trade-offs between bit rate efficiency and decoding energy demand for VVC-coded sequences. The proposed methodology extends the design space and enhances the continuity of the Pareto front.
title Design Space Exploration at Frame-Level for Joint Decoding Energy and Quality Optimization in VVC
topic Image and Video Processing
url https://arxiv.org/abs/2410.00533