A High-Throughput Design for the H.266/VVC Low-Frequency Non-Separable Transform
Jones Göebel, Vı́tor Santos Costa, Luciano Volcan Agostini, Bruno Zatt, Marcelo Porto · 2022
This paper presents a high throughput hardware design for the Low-Frequency Non-Separable Transform (LFNST) of the Versatile Video Coding (H.266/VVC) standard. The LFNST is a secondary transform used to transform the coefficients already transformed by the DCT-II as primary transform over the residues from the directional intra prediction. The LFNST architecture was designed to process Ultra-High Definition (UHD) videos with $4098 \times 2160$ pixels (4K) at 60 frames per second. Our solution presents an area utilization of 99.13 kgates and a power dissipation of 38.50 mW, when running at 186.62 MHz and considering the worst-case operation (processing the LFNST $4\times 4$ through TU size of $4\times 4$).