基于运动相似度的H.264低复杂度MB层速率控制算法

Z. Cui, Xiuchang Zhu
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引用次数: 2

摘要

提出了一种简单有效、复杂度低的H.264/AVC宏块(MB)层速率控制(RC)方案。首先,为了降低JVT-G012采用的MB层线性平均绝对差(MAD)预测的计算成本和不准确性,MAD直接根据当前原始MB与估计MV所指向的参考块之间的差值,利用密集运动相似度进行计算。然后,由于H.264编码模式复杂,压缩效率高,MB报头位不是恒定的,因此基于时空相关预测MB报头位;最后,根据MB目标比特率的复杂度分配MB目标比特率,并使用具有高时空相关性和运动相似度的编码MB而不是最后编码的数据点来更新二次R-D模型的参数。仿真结果表明,与经典的JVT-H017 RC算法相比,该方案的平均PSNR增益为0.37 dB,能更好地满足目标比特率,对帧内的mb图像产生更一致的质量,从而提高了视觉质量,同时具有更低的计算复杂度,适合实时应用。
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A low complexity MB layer rate control algorithm based on motion similarity for H.264
This paper presents a simple but effective macroblock (MB) layer rate control (RC) scheme for H.264/AVC with low complexity. First, to reduce computation cost and inaccuracy of linear mean absolute difference (MAD) prediction at MB layer adopted in JVT-G012, MAD is computed directly according to the difference between current original MB and the reference blocks pointed by estimated MV using intensive motion similarity. Then, MB header bits are predicted based on spatial-temporal correlation because it is not constant due to complicated coding modes and high compression efficiency of H.264. Finally, MB target bit rate is allocated according to its complexity and the parameters of quadratic R-D model are updated using coded MBs with high spatial-temporal correlation and motion similarity not the last coded data points. Simulation results show that the proposed scheme achieves an average PSNR gain of 0.37 dB, meets better with target bit rate, produces more consistent quality for the MBs in a frame and thus improves visual quality compared to classic JVT-H017 RC algorithm, simultaneously has lower computation complexity and suits for real-time application.
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