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首页> 外文期刊>Journal of signal processing systems for signal, image, and video technology >An Architecture for Asymmetric Numeral Systems Entropy Decoder - A Comparison with a Canonical Huffman Decoder
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An Architecture for Asymmetric Numeral Systems Entropy Decoder - A Comparison with a Canonical Huffman Decoder

机译:非对称数字系统熵解码器的体系结构-与规范霍夫曼解码器的比较

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摘要

This paper proposes two decoder hardware architectures for the tabled asymmetric numeral systems (tANS) compression algorithm, a software implementation of which is used by Apple and Facebook due to its efficiency. To the best of our knowledge, hardware architectures for the highly efficient tANs algorithm are investigated by the authors so far uniquely. The tANS decoder hardware architectures have been compared to a novel Huffman decoder hardware architecture because the Huffman coding is known as one of the fastest coding techniques in hardware and software. For the proposed architectures, the decoding throughput is highly dependent on the compression ratio of data. Experimental results show that the proposed tANS architecture outperforms the tANS software decoder and can achieve the throughput up to 200MB/s using current FPGA technology. Compared to canonical Huffman decoder the proposed hardware architecture provides up to four times higher decoding throughput.
机译:本文提出了针对表式非对称数字系统(tANS)压缩算法的两种解码器硬件体系结构,由于其效率,Apple和Facebook使用了其软件实现。据我们所知,到目前为止,作者对独特的高效tANs算法的硬件体系结构进行了研究。由于霍夫曼编码是硬件和软件中最快的编码技术之一,因此已将tANS解码器硬件体系结构与新型霍夫曼解码器硬件体系结构进行了比较。对于所提出的架构,解码吞吐量高度依赖于数据的压缩率。实验结果表明,所提出的tANS架构优于tANS软件解码器,并且使用当前的FPGA技术可以实现高达200MB / s的吞吐量。与规范的霍夫曼解码器相比,建议的硬件体系结构可提供高达四倍的解码吞吐量。

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