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Low-Complexity Coarse-Level Mode-Mapping Based H.264/AVC to H.264/SVC Spatial Transcoding for Video Conferencing

机译:基于低复杂度粗模式映射的H.264 / AVC到H.264 / SVC视频会议的空间转码

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摘要

Scalable Video Coding (SVC) was standardized as an extension of H.264/AVC with the intention to provide flexible adaptation to heterogeneous networks and different end-user requirements, which provides great scalability in multi-point applications such as video conferencing. However, due to the existence of H.264/AVC-based systems, transcoding between AVC and SVC becomes necessary. Most existing works focus on temporal transcoding, quality transcoding or SVC-to-AVC spatial transcoding while the straightforward re-encoding method requires high computational cost. This paper proposes a low-complexity AVC-to-SVC spatial transcoder based on coarse-level mode mapping for video conferencing scenes. First, to omit unnecessary motion estimations (ME) for layers with reduced resolution, an ME skipping scheme based on AVC mode distribution is proposed with an adaptive search range. Then a probability-profile based scheme is proposed for further mode skipping. After that 3 coarse-level mode-mapping methods are presented for fast mode decision and the adaptive usage of the 3 methods is discussed. Finally, motion vector (MV) refinement is introduced for further lower-layer time reduction. As for the top layer, direct encapsulation is proposed to preserve better quality and another scheme involving inter-layer predictions is also provided for bandwidth-crucial applications. Simulation results show that proposed transcoder achieves up to 92.6% time reduction without significant coding efficiency loss compared to re-encoding method.
机译:可扩展视频编码(SVC)被标准化为H.264 / AVC的扩展,旨在为异构网络和不同的最终用户要求提供灵活的适应性,从而在视频会议等多点应用中提供了极大的可扩展性。但是,由于存在基于H.264 / AVC的系统,因此AVC和SVC之间的转码变得必要。现有的大多数工作都集中在时间转码,质量转码或SVC到AVC空间转码,而直接的重新编码方法需要很高的计算成本。本文针对视频会议场景,提出了一种基于粗糙模式映射的低复杂度AVC-SVC空间代码转换器。首先,为了省略具有降低的分辨率的层的不必要的运动估计(ME),提出了基于AVC模式分布的具有自适应搜索范围的ME跳过方案。然后,提出了一种基于概率分布的方案,用于进一步的模式跳过。在此之后,提出了三种用于快速模式决策的粗略模式映射方法,并讨论了这三种方法的自适应用法。最后,引入运动矢量(MV)细化以进一步降低下层时间。至于顶层,提出了直接封装以保持更好的质量,并且还为带宽至关重要的应用提供了另一种涉及层间预测的方案。仿真结果表明,与重新编码方法相比,所提出的代码转换器可节省多达92.6%的时间,而不会显着降低编码效率。

著录项

  • 来源
    《IEICE Transactions on Information and Systems》 |2012年第5期|p.1313-1323|共11页
  • 作者单位

    Graduate School of Information, Production and Systems, Waseda University, Kitakyusyu-shi, 808-0135 Japan;

    Graduate School of Information, Production and Systems, Waseda University, Kitakyusyu-shi, 808-0135 Japan;

    Graduate School of Information, Production and Systems, Waseda University, Kitakyusyu-shi, 808-0135 Japan;

    Ricoh R&D Center, Yokohama-shi, 224-0035 Japan;

    Ricoh R&D Center, Yokohama-shi, 224-0035 Japan;

    Graduate School of Information, Production and Systems, Waseda University, Kitakyusyu-shi, 808-0135 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    AVC-SVC transcoding; spatial scalability; mode-mapping; lowcomplexity; video conferencing;

    机译:AVC-SVC转码;空间可扩展性;模式映射低复杂度视频会议;
  • 入库时间 2022-08-18 00:26:20

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