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Content-Adaptive Feature-Based CU Size Prediction for Fast Low-Delay Video Encoding in HEVC
Journal article   Open access   Peer reviewed

Content-Adaptive Feature-Based CU Size Prediction for Fast Low-Delay Video Encoding in HEVC

T Mallikarachchi, Dumidu Talagala, Hemantha Kodikara Arachchi and Warnakulasuriya Fernando
IEEE Transactions on Circuits and Systems for Video Technology, Vol.28(3), pp.693-705
20/10/2016

Abstract

HEVC CU size low-delay motion classification RD optimization video coding Electronic Engineering
Determining the best partitioning structure of a Coding Tree Unit (CTU) is one of the most time consuming operations in HEVC encoding. Specifically, it is the evaluation of the quadtree hierarchy using the Rate-Distortion (RD) optimization that has the most significant impact on the encoding time, especially in the cases of High Definition (HD) and Ultra High Definition (UHD) videos. In order to expedite the encoding for low delay applications, this paper proposes a Coding Unit (CU) size selection and encoding algorithm for inter-prediction in the HEVC. To this end, it describes (i) two CU classification models based on Inter N N mode motion features and RD cost thresholds to predict the CU split decision, (ii) an online training scheme for dynamic content adaptation, (iii) a motion vector reuse mechanism to expedite the motion estimation process, and finally introduces (iv) a computational complexity to coding efficiency trade-off process to enable flexible control of the algorithm. The experimental results reveal that the proposed algorithm achieves a consistent average encoding time performance ranging from 55% – 58% and 57% – 61% with average Bjøntegaard Delta Bit Rate (BDBR) increases of 1.93% – 2.26% and 2.14% – 2.33% compared to the HEVC 16.0 reference software for the low delay P and low delay B configurations, respectively, across a wide range of content types and bit rates.
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