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Video Streaming with Efficient SHVC to HEVC Transcoding

机译:高效SHVC到HEVC转码的视频流

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This paper proposes an efficient Scalable High efficiency Video Coding (SHVC) to High Efficiency Video Coding (HEVC) transcoder, which can reduce the transcoding complexity significantly, and provide a desired trade-off between the transcoding complexity and the transcoded video quality. To reduce the transcoding complexity, some of coding information, such as coding unit (CU) depth, prediction mode, merge mode, motion vector information, intra direction information and transform unit (TU) depth information, in the SHVC bitstream are mapped and transcoded to single layer HEVC bitstream. One major difficulty in transcoding arises when trying to reuse the motion information from SHVC bitstream since motion vectors referring to inter-layer reference (ILR) pictures cannot be reused directly in transcoding. Reusing motion information obtained from ILR pictures for those prediction units (PUs) will reduce the complexity of the SHVC transcoder greatly but a significant reduction in the quality of the picture is observed. Pictures corresponding to the intra refresh pictures in the base layer (BL) will be coded as P pictures in enhancement layer (EL) in the SHVC bitstream; and directly reusing the intra information from the BL for transcoding will not get a good coding efficiency. To solve these problems, various transcoding technologies are proposed. The proposed technologies offer different trade-offs between transcoding speed and transcoding quality. They are implemented on the basis of reference software SHM-6.0 and HM-14.0 for the two layer spatial scalability configuration. Simulations show that the proposed SHVC software transcoder reduces the transcoding complexity by up to 98-99% using low complexity transcoding mode when compared with cascaded re-encoding method. The transcoder performance at various bitrates with different transcoding modes are compared in terms of transcoding speed and transcoded video quality.
机译:本文提出了一种高效的可伸缩高效视频编码(SHVC)到高效视频编码(HEVC)转码器,它可以显着降低转码复杂度,并在转码复杂度和转码视频质量之间提供理想的折衷方案。为了降低转码复杂度,对SHVC比特流中的某些编码信息(例如编码单元(CU)深度,预测模式,合并模式,运动矢量信息,帧内方向信息和变换单元(TU)深度信息)进行映射和转码。到单层HEVC比特流。当尝试重用SHVC比特流中的运动信息时,会出现转码的一个主要困难,因为引用层间参考(ILR)图片的运动矢量无法直接在转码中重用。为那些预测单元(PU)重新使用从ILR图片获得的运动信息将大大降低SHVC转码器的复杂性,但是可以观察到图片质量的显着降低。在SHVC比特流中,与基础层(BL)中的帧内刷新图片相对应的图片将被编码为增强层(EL)中的P图片;并且直接将来自BL的帧内信息重新用于转码将不会获得良好的编码效率。为了解决这些问题,提出了各种代码转换技术。所提出的技术在代码转换速度和代码转换质量之间提供了不同的权衡。它们是在参考软件SHM-6.0和HM-14.0的基础上实现的,用于两层空间可伸缩性配置。仿真表明,与级联重编码方法相比,所提出的SHVC软件代码转换器使用低复杂度代码转换模式可将代码转换复杂度降低多达98-99%。根据转码速度和转码视频质量,比较了具有不同转码模式的各种比特率下的转码器性能。

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