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Content-Aware Write Reduction Mechanism of 3D Stacked Phase-Change RAM Based Frame Store in H.264 Video Codec System

机译:H.264视频编解码系统中基于3D堆叠相变RAM的帧存储内容感知写减少机制

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摘要

H.264 video codec system requires big capacity and high bandwidth of Frame Store (FS) for buffering reference frames. The up-to-date three dimensional (3D) stacked Phase change Random Access Memory (PRAM) is the promising approach for on-chip caching the reference signals, as 3D stacking offers high memory bandwidth, while PRAM possesses the advantages in terms of high density and low leakage power. However, the write endurance problem, that is a PRAM cell can only tolerant limited number of write operations, becomes the main barrier in practical applications. This paper studies the wear reduction techniques of PRAM based FS in H.264 codec system. On the basis of rate-distortion theory, the content oriented selective writing mechanisms are proposed to reduce bit updates in the reference frame buffers. With the proposed control parameter a, our methods make the quantitative trade off between the quality degradation and the PRAM lifetime prolongation. Specifically, taking a in the range of 0.2,2, experimental results demonstrate that, our methods averagely save 29.9-35.5 bit-wise write operations and reduce 52-57 power, at the cost of 12.95-20.57 BDBR bit-rate increase accordingly.
机译:H.264 视频编解码系统需要大容量和高带宽的帧存储 (FS) 来缓冲参考帧。最新的三维 (3D) 堆叠相变随机存取存储器 (PRAM) 是片上缓存参考信号的有前途的方法,因为 3D 堆叠提供高存储器带宽,而 PRAM 在高密度和低泄漏功率方面具有优势。然而,写入耐久性问题,即PRAM单元只能容忍有限数量的写入操作,成为实际应用中的主要障碍。本文研究了基于PRAM的FS在H.264编解码系统中的减磨损技术。在速率失真理论的基础上,提出了面向内容的选择性写入机制,以减少参考帧缓冲器中的比特更新。通过提出的控制参数a,我们的方法在质量下降和PRAM寿命延长之间进行了定量权衡。具体而言,在[0.2,2]范围内,实验结果表明,我们的方法平均节省了29.9-35.5%的逐位写入操作,降低了52-57%的功耗,但BDBR比特率相应提高了12.95-20.57%。

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