English

Decoding-Energy-Rate-Distortion Optimization for Video Coding

Image and Video Processing 2022-03-03 v1

Abstract

This paper presents a method for generating coded video bit streams requiring less decoding energy than conventionally coded bit streams. To this end, we propose extending the standard rate-distortion optimization approach to also consider the decoding energy. In the encoder, the decoding energy is estimated during runtime using a feature-based energy model. These energy estimates are then used to calculate decoding-energy-rate-distortion costs that are minimized by the encoder. This ultimately leads to optimal trade-offs between these three parameters. Therefore, we introduce the mathematical theory for describing decoding-energy-rate-distortion optimization and the proposed encoder algorithm is explained in detail. For rate-energy control, a new encoder parameter is introduced. Finally, measurements of the software decoding process for HEVC-coded bit streams are performed. Results show that this approach can lead to up to 30% of decoding energy reduction at a constant visual objective quality when accepting a bitrate increase at the same order of magnitude.

Keywords

Cite

@article{arxiv.2203.01099,
  title  = {Decoding-Energy-Rate-Distortion Optimization for Video Coding},
  author = {Christian Herglotz and Andreas Heindel and André Kaup},
  journal= {arXiv preprint arXiv:2203.01099},
  year   = {2022}
}

Comments

12 pages, 10 figures