Advanced Design Space Exploration for Joint Energy and Quality Optimization for VVC

Fuente: arXiv
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Auteurs principaux: Kränzler, Matthias, Herglotz, Christian, Kaup, André
Format: Preprint
Publié: 2022
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author Kränzler, Matthias
Herglotz, Christian
Kaup, André
author_facet Kränzler, Matthias
Herglotz, Christian
Kaup, André
contents In recent studies, it could be shown that the energy demand of Versatile Video Coding (VVC) decoders can be twice as high as comparable High Efficiency Video Coding (HEVC) decoders. A significant part of this increase in complexity is attributed to the usage of new coding tools. By using a design space exploration algorithm, it was shown that the energy demand of VVC-coded sequences could be reduced if different coding tool profiles were used for the encoding process. This work extends the algorithm with several optimization strategies, methodological adjustments to optimize perceptual quality, and a new minimization criterion. As a result, we significantly improve the Pareto front, and the rate-distortion and energy efficiency of the state-of-the-art design space exploration. Therefore, we show an energy demand reduction of up to 47% with less than 30% additional bit rate, or a reduction of over 35% with approximately 6% additional bit rate.
format Preprint
id arxiv_https___arxiv_org_abs_2209_10211
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Advanced Design Space Exploration for Joint Energy and Quality Optimization for VVC
Kränzler, Matthias
Herglotz, Christian
Kaup, André
Image and Video Processing
In recent studies, it could be shown that the energy demand of Versatile Video Coding (VVC) decoders can be twice as high as comparable High Efficiency Video Coding (HEVC) decoders. A significant part of this increase in complexity is attributed to the usage of new coding tools. By using a design space exploration algorithm, it was shown that the energy demand of VVC-coded sequences could be reduced if different coding tool profiles were used for the encoding process. This work extends the algorithm with several optimization strategies, methodological adjustments to optimize perceptual quality, and a new minimization criterion. As a result, we significantly improve the Pareto front, and the rate-distortion and energy efficiency of the state-of-the-art design space exploration. Therefore, we show an energy demand reduction of up to 47% with less than 30% additional bit rate, or a reduction of over 35% with approximately 6% additional bit rate.
title Advanced Design Space Exploration for Joint Energy and Quality Optimization for VVC
topic Image and Video Processing
url https://arxiv.org/abs/2209.10211