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Fast sample adaptive offset algorithm for 360-degree video coding

机译:360度视频编码的快速采样自适应偏移算法

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摘要

360-degree video is becoming popular with the development of the virtual reality(VR) technology in recent years. For this kind of video, pictures are projected to a two-dimensional plane. Standard video encoders are used for compression. Due to the projection mapping of the spherical video to the two-dimensional plane video, many conventional coding tools can be adjusted properly for better performance. As the 360-degree videos are high resolution videos, usually 8K resolution videos, the high complexity for encoding 360-degree videos is a problem to be solved urgently, especially for the latest video standard H.265/HEVC. Sample adaptive offset (SAO) is a new tool adopted in H.265/HEVC. It can reduce ringing artifacts and achieve higher coding efficiency. But it also introduces high computational complexity, especially on high resolution videos. In this paper, a fuzzy control based fast SAO method is proposed to reduce the high computational complexity in SAO encoding process according to the characteristics of the ERP format video. Compared with the original algorithm in the reference software HM 16.14, experimental results show that the proposed method can reduce about 73% SAO encoding time on average under the common test conditions with negligible loss.
机译:360度视频近年来越来越受到虚拟现实(VR)技术的发展。对于这种视频,图像被投影到二维平面。标准视频编码器用于压缩。由于球面视频对二维平面视频的投影映射,可以适当地调节许多传统的编码工具以获得更好的性能。由于360度视频是高分辨率视频,通常为8K分辨率的视频,用于编码360度视频的高复杂性是迫切需要解决的问题,特别是对于最新的视频标准H.265 / HEVC。样本自适应偏移(SAO)是H.265 / HEVC采用的新工具。它可以减少振铃伪像并实现更高的编码效率。但它还介绍了高计算复杂性,特别是在高分辨率视频上。本文提出了一种基于模糊的快速SAO方法,以减少根据ERP格式视频的特征的SAO编码过程中的高计算复杂性。与参考软件HM 16.14中的原始算法相比,实验结果表明,该方法可以在普通的测试条件下平均减少约73%的SAO编码时间,其损失可忽略不计。

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