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Multimode Embedded Compression Codec Engine for Power-Aware Video Coding System

机译:用于功率感知视频编码系统的多模式嵌入式压缩编解码器引擎

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摘要

In a typical portable multimedia system, external access, which is usually dominated by block-based video content, induces more than half of total system power. Embedded compression (EC) effectively reduces external access caused by video content by reducing the data size. In this paper, an algorithm and a hardware architecture of a new type EC codec engine with multiple modes are presented. Lossless mode, and lossy modes with rate control modes and quality control modes are all supported by single algorithm. The proposed four-tree pipelining scheme can reduce 83% latency and 67% buffer size between transform and entropy coding. The proposed EC codec engine can save 62%, 66%, and 77% external access at lossless mode, half-size mode, and quarter-size mode and can be used in various system power conditions. With TSMC 0.18 $mu{hbox {m}}$ 1P6M CMOS logic process, the proposed EC codec engine can encode or decode CIF 30 frame per second video data and achieve power saving of more than 109 mW. The EC codec engine itself consumes only 2 mW power.
机译:在典型的便携式多媒体系统中,通常由基于块的视频内容主导的外部访问会产生系统总功率的一半以上。嵌入式压缩(EC)通过减小数据大小有效地减少了由视频内容引起的外部访问。本文提出了一种新型的多模式EC编解码引擎的算法和硬件架构。单个算法支持无损模式以及具有速率控制模式和质量控制模式的有损模式。所提出的四树流水线方案可以减少转换和熵编码之间的83%的等待时间和67%的缓冲区大小。拟议的EC编解码器引擎在无损模式,半尺寸模式和四分之一尺寸模式下可以节省62%,66%和77%的外部访问权限,并且可以在各种系统功率条件下使用。借助台积电0.18美元/分钟的1P6M CMOS逻辑处理程序,拟议的EC编解码器引擎可以对每秒30帧的CIF视频数据进行编码或解码,并实现超过109毫瓦的节能。 EC编解码器引擎本身仅消耗2 mW的功率。

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