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Memory Efficient and Low Complexity Variable Length Decoding for MPEG-4 Applications

机译:MPEG-4应用程序的内存高效和低复杂度可变长度解码

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Variable Length Decoding (VLD) is one of the most computationally expensive parts in a video decoder. Since VLD is an inherent bit-serial operation and is the first stage of the whole decoding task, the overall decoding system performance is determined by its throughput and efficiency. In this paper, a VLD scheme is presented. The proposed VLD tables need less than 6Kbytes memory space, and the decoding procedures are completed by applying numerical properties to codewords identification and symbol indexing. Compared with the direct indexing method, not only the memory space is reduced for symbol information, but also the code efficiency is improved by enabling the compiling code with the near mode. Experimental results show that the proposed solution can improve the VLD speed by 17-43%. This VLD method has been integrated into the developed embedded MPEG-4 video decoder and can perform real-time decoding under eight channels Common Intermediate Format (CIF) frame size.
机译:可变长度解码(VLD)是视频解码器中最具计算昂贵的部分之一。由于VLD是固有的位串行操作并且是整个解码任务的第一阶段,因此整体解码系统性能由其吞吐量和效率决定。本文提出了一种VLD方案。所提出的VLD表需要少于6kbytes内存空间,并且通过将数值应用于码字标识和符号索引来完成解码过程。与直接索引方法相比,不仅可以减少存储空间的符号信息,还通过使编译代码能够通过近似模式来提高代码效率。实验结果表明,所提出的解决方案可以将VLD速度提高17-43%。该VLD方法已集成到开发的嵌入式MPEG-4视频解码器中,可以在八个通道中执行实时解码常见的中间格式(CIF)帧大小。

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