Fast Computation Algorithm of Discrete Cosine Transform for Versatile Video Coding
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Abstract
Video Compression is one of the most essential tasks in applications such as video
newlinebroadcasting, video communications, and video streaming. With the increase in 4k and
newlinebeyond resolutions, there is a huge demand for high quality videos with high compres-
newlinesion efficiency. There are many video coding standards and Versatile Video Coding
newline(VVC) is one of the latest and most advanced video coding standards developed by
newlineITU-T and IEC/ISO. VVC is aimed to increase the compression efficiency of videos by
newlinetwo times compared to its predecessors (like High Efficiency Video Coding or HEVC)
newlineat the cost of the increase in the encoder complexity. There are many blocks/modules
newlinein the VVC encoder and transform block is one of the critical blocks in the encoder,
newlinewhich consumes almost 40% of the total encoding time. This thesis proposes a novel
newlinefast transform algorithm that reduces encoder time complexity without compromising
newlineon output video quality and compression efficiency.
newlineThere are many transform algorithms for video encoding and Multiple Transform
newlineselection (MTS) algorithm is one of the fast transform selection techniques which can
newlinebe used in VVC. It employs various types of Discrete Cosine Transform (DCT) and
newlineDiscrete Sine Transform (DST) algorithms by selecting them adaptively based on the
newlinestatistics of the video content. This thesis proposes a novel fast MTS algorithm and the
newlineexperimental results show that there is an overall reduction of 22% of total encoder time complexity with negligible loss in output video quality and compression efficiency
newline