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首页> 外文期刊>Circuits and Systems for Video Technology, IEEE Transactions on >Adaptive Downsampling Video Coding With Spatially Scalable Rate-Distortion Modeling
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Adaptive Downsampling Video Coding With Spatially Scalable Rate-Distortion Modeling

机译:具有空间可扩展速率失真建模的自适应下采样视频编码

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摘要

Downsampling video coding, whereby downsampled frames are encoded, provides improved perceptual quality in rate-constrained situations. This method shows considerable advantages over other approaches, particularly in wide-spreading high-definition video formats. This paper provides a comprehensive analysis of downsampling video coding. The study proposes a spatially scalable rate-distortion (RD) model, comprising quantization-distortion and quantization-rate models, and develops an optimal encoding frame size determination framework. The proposed method achieves a gain up to 2.3 dB peak signal-to-noise ratio (PSNR) at 1 Mb/s when compared with conventional full frame size coding. The RD performance is close to the optimal scenario, in which the ideal frame size is obtained by heuristically performing downsampling coding in various allowable sizes.
机译:通过对降采样的帧进行编码的降采样视频编码可在速率受限的情况下提高感知质量。与其他方法相比,此方法显示出相当大的优势,尤其是在广泛传播的高清视频格式中。本文提供了对下采样视频编码的全面分析。该研究提出了一种空间可伸缩率失真模型,包括量化失真模型和量化速率模型,并开发了一种最佳的编码帧大小确定框架。与传统的全帧尺寸编码相比,该方法在1 Mb / s时可获得高达2.3 dB的峰值信噪比(PSNR)增益。 RD性能接近于最佳方案,在理想方案中,理想的帧大小是通过试探性地以各种允许的大小执行下采样编码而获得的。

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