低复杂度视频编码的全局运动补偿和谱熵位分配

Malavika Bhaskaranand, J. Gibson
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引用次数: 3

摘要

大多数标准的视频压缩方案,如H.264/AVC,都涉及到一个带有块运动估计(ME)引擎的高复杂度编码器。然而,使用无人机(uav)的视频侦察和监视等应用需要低复杂度的视频编码器。此外,在此类应用中,视频中的运动主要是全局的,并且由于摄像机平台的已知运动。因此,在这项工作中,我们提出并研究了一种基于全局运动的帧预测和无块ME的低复杂度编码器。我们表明,对于大多数具有全局运动的视频,该编码器比ME块大小限制为8×8的基线H.264编码器表现更好。此外,随着比特率的降低,这种编码器的质量下降比基线H.264编码器的质量下降更缓慢,因为它不需要在运动向量(mv)和剩余数据之间分配比特。我们还结合了基于谱熵的系数选择和量化器设计方案,该方案需要延迟,并证明它有助于在整个视频序列中实现更一致的帧质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Global motion compensation and spectral entropy bit allocation for low complexity video coding
Most standard video compression schemes such as H.264/AVC involve a high complexity encoder with block motion estimation (ME) engine. However, applications such as video reconnaissance and surveillance using unmanned aerial vehicles (UAVs) require a low complexity video encoder. Additionally, in such applications, the motion in the video is primarily global and due to the known movement of the camera platform. Therefore in this work, we propose and investigate a low complexity encoder with global motion based frame prediction and no block ME. We show that for videos with mostly global motion, this encoder performs better than a baseline H.264 encoder with ME block size restricted to 8×8. Furthermore, the quality degradation of this encoder with decreasing bit rate is more gradual than that of the baseline H.264 encoder since it does not need to allocate bits across motion vectors (MVs) and residue data. We also incorporate a spectral entropy based coefficient selection and quantizer design scheme that entails latency and demonstrate that it helps achieve more consistent frame quality across the video sequence.
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