New rate control Scheme based on Cauchy Rate-Distortion Optimization Model for H.264 Video Coding

N. Eiamjumrus, S. Aramvith
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引用次数: 2

Abstract

Base on the observation that Cauchy distribution provides accurate estimates of rate and distortion characteristics of video sequences, in this paper, we propose a new rate control scheme based on Cauchy based rate-distortion optimization model for the application of H.264 bit allocation. One solution which has been proposed in this paper uses the Langrange multiplier technique as the cost function to find the rate and distortion model subject to the target bit rate constraint resulting in the optimum choice of quantization step sizes. Model parameters are estimated using statistical linear regression analysis. Accordingly we then propose a simple rate control scheme using this new Cauchy rate-distortion model. The target number of bit for each frame is determined according to their buffer status, combined with the number of bits use in the previous frame. The technique proposed has been implemented in H.264 video encoder. Experimental results showed that the proposed rate control algorithm achieves an improvement of average PSNR with smooth video quality compared with the H.264 JM8.6 rate control
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基于柯西率失真优化模型的H.264视频编码速率控制新方案
基于柯西分布能准确估计视频序列的速率和失真特性,本文提出了一种基于柯西的速率失真优化模型的H.264比特分配的速率控制方案。本文提出的一种解决方案是使用朗朗日乘法器技术作为代价函数来找到受目标比特率约束的速率和失真模型,从而实现量化步长的最佳选择。模型参数估计采用统计线性回归分析。据此,我们提出了一种简单的速率控制方案,该方案采用了新的柯西速率失真模型。每一帧的目标比特数是根据它们的缓冲区状态,结合前一帧使用的比特数来确定的。该技术已在H.264视频编码器中实现。实验结果表明,与H.264 JM8.6码率控制相比,所提出的码率控制算法实现了平均PSNR的提高和视频质量的平滑
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