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Cauchy-density-based basic unit layer rate controller for H.264/AVC

机译:基于柯西密度的H.264 / AVC基本单位层速率控制器

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摘要

The rate control problem has been extensively studied in parallel to the development of the different video coding standards. The bit allocation via Cauchy-density-based rate-distortion modeling of the discrete cosine transform coefficients has proved to be one of the most accurate solutions at picture level. Nevertheless, in some specific applications operating in real-time low-delay environments, a basic unit (BU) layer is recommended in order to provide a good tradeoff between picture quality and delay control. In this letter, a novel BU bit allocation for H.264/advanced video coding is proposed based on a simplified Cauchy probability density function source modeling. The experimental results are twofold: 1) the proposed rate control algorithm (RCA) achieves an average peak signal-to-noise ratio improvement of 0.28 dB respect to a well-known BU layer RCA, while maintaining a similar buffer occupancy evolution, and 2) it achieves to notably reduce the buffer occupancy fluctuations respect to a well-known picture layer RCA, while maintaining similar quality levels.
机译:速率控制问题已经与不同视频编码标准的发展并行地被广泛研究。事实证明,通过基于柯西密度的离散余弦变换系数的速率失真建模进行位分配是图片级最精确的解决方案之一。但是,在实时低延迟环境中运行的某些特定应用中,建议使用基本单元(BU)层,以便在图像质量和延迟控制之间提供良好的折衷。在这封信中,基于简化的柯西概率密度函数源建模,提出了一种用于H.264 /高级视频编码的新型BU位分配。实验结果有两个方面:1)提出的速率控制算法(RCA)相对于著名的BU层RCA实现了0.28 dB的平均峰值信噪比改善,同时保持了类似的缓冲区占用率演变,以及2 ),可以在保持相似质量水平的同时,显着减少相对于知名图片层RCA的缓冲区占用波动。

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