Approximate Hardware Architecture for Interpolation Filter of Versatile Video Coding

Author:

Silva Giovane Gomes,Siqueira Ícaro Gonçalves,Grellert MateusORCID,Diniz Claudio MachadoORCID

Abstract

The new Versatile Video Coding (VVC) standard was recently developed to improve compression efficiency of previous video coding standards and to support new applications. This was achieved at the cost of an increase in the computational complexity of the encoder algorithms, which leads to the need to develop hardware accelerators and to apply approximate computing techniques to achieve the performance and power dissipation required for systems that encode video. This work proposes the implementation of an approximate hardware architecture for interpolation filters defined in the VVC standard targeting real-time processing of high resolution videos. The architecture is able to process up to 2560x1600 pixels videos at 30 fps with power dissipation of 23.9 mW when operating at a frequency of 522 MHz, with an average compression efficiency degradation of only 0.41% compared to default VVC video encoder software configuration.

Publisher

Journal of Integrated Circuits and Systems

Subject

Electrical and Electronic Engineering

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Error-Resilience Profiling of Inter-Frame Prediction at VVC Encoders for Approximate Storage;2024 IEEE 15th Latin America Symposium on Circuits and Systems (LASCAS);2024-02-27

2. Low-Energy and Reduced-Area Hardware Architecture for the Versatile Video Coding FME;2023 36th SBC/SBMicro/IEEE/ACM Symposium on Integrated Circuits and Systems Design (SBCCI);2023-08-28

3. Efficient Hardware Design for the VVC Affine Motion Compensation Exploiting Multiple Constant Multiplication;2023 IEEE Computer Society Annual Symposium on VLSI (ISVLSI);2023-06-20

4. Hardware Design for the Affine Motion Compensation of the VVC Standard;2023 IEEE 14th Latin America Symposium on Circuits and Systems (LASCAS);2023-02-27

5. Sub-10 pA/V Transconductance Amplifier Using 0.9 V, 32 nm Carbon Nanotube Field Effect Transistor;Journal of Circuits, Systems and Computers;2022-05-30

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