Low-Complexity Geometric Inter-Prediction for Versatile Video Coding

Max Bläser, Han Gao, S. Esenlik, E. Alshina, Zhijie Zhao, Christian Rohlfing, E. Steinbach
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引用次数: 6

Abstract

Non-rectangular block partitioning is a well-known method for improved inter-picture prediction in video coding, enabling better spatial adaptation to the signal properties. This contribution presents the most recent proposal of geometric inter-prediction (GIP) made to the Versatile Video Coding (VVC) standardization activity led by the Joint Video Experts Team (JVET). Implemented in the latest test model VTM-5.0 and evaluated according to the JVET Common Test Conditions, the proposed low-complexity GIP scheme provides objective luma BD-rate reductions of 0.22 % for random access and 0.44 % for low-delay test cases at 7% encoder runtime increase and negligible decoder runtime increase. The coding gain is provided by non-triangular partitioned blocks and in the presence of multiple other VVC coding tools. Furthermore, BD-rate reductions of 2.58 % and 2.78 % can be achieved specifically for pure screen content by employing an adaptive blending filter.
多用途视频编码的低复杂度几何互预测
非矩形块分割是一种众所周知的改进视频编码中图像间预测的方法,能够更好地适应信号的空间特性。本文介绍了由联合视频专家组(JVET)领导的通用视频编码(VVC)标准化活动中提出的几何互预测(GIP)的最新建议。在最新的测试模型VTM-5.0中实现,并根据JVET通用测试条件进行评估,所提出的低复杂性GIP方案在编码器运行时间增加7%而解码器运行时间增加可以忽略的情况下,在随机访问和低延迟测试用例中,客观亮度降低率分别为0.22%和0.44%。编码增益由非三角形分割块提供,并且存在多个其他VVC编码工具。此外,通过采用自适应混合滤波器,可以实现对纯筛网内容的bd率降低2.58%和2.78%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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