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A novel frame-level bit allocation based on two-pass video encoding for low bit rate video streaming applications

机译:一种基于两遍视频编码的新颖帧级比特分配,用于低比特率视频流应用

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摘要

Current rate control schemes in video coding standards do not have efficient frame-level bit allocation due to the limitation of real-time encoding. In this paper, by taking advantage of offline video encoding, we proposed a frame-level bit allocation scheme based on a latest developed rate-distortion (R-D) model, the ρ-domain R-D model [IEEE Trans. Circuits Syst. Video Technol. (2001) 928], for low bit rate streaming applications. Specifically, at the encoder, we code each video sequence twice. In the first pass, we generate the R-D information of video sequences. Then, in the second pass, according to the available channel bandwidth, by exploiting the pre-generated R-D information we are able to implement frame-level bit allocation in an optimal way so that video sequences can be coded at low bit rate with an improved quality. We apply the proposed bit allocation scheme for both offline video coding and rate-reduction transcoding. Experimental results demonstrate the proposed scheme is able to achieve not only reduced average distortion but also much smoother visual quality.
机译:由于实时编码的限制,视频编码标准中的当前速率控制方案没有有效的帧级比特分配。在本文中,我们利用离线视频编码的优势,提出了一种基于最新开发的速率失真(R-D)模型,ρ域R-D模型[IEEE Trans。电路系统视频技术。 (2001)928],用于低比特率流应用。具体来说,在编码器中,我们对每个视频序列进行两次编码。在第一遍中,我们生成视频序列的R-D信息。然后,在第二遍中,根据可用的信道带宽,通过利用预先生成的RD信息,我们能够以最佳方式实现帧级比特分配,从而可以以改进的低比特率对视频序列进行编码质量。我们将提出的比特分配方案应用于离线视频编码和速率降低转码。实验结果表明,提出的方案不仅能够实现平均失真的降低,而且视觉质量也更加平滑。

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