Video compression using integer DCT

Ying-Jui Chen, S. Oraintara, Truong Q. Nguyen
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引用次数: 70

Abstract

This paper describes the implementation of the integer discrete cosine transform (IntDCT) using the Walsh-Hadamard transform and the lifting scheme. The implementation is in the forms of shifts and adds, and all internal nodes have finite precision. A general-purpose scheme of 8-pt IntDCT with complexity of 45 adds and 18 shifts is proposed which gives comparable performance to the floating-point DCT (FloatDCT). For this particular scheme with 8-bit input, perfect reconstruction (PR) is preserved even when all the internal nodes are limited to 16-bit words, rendering the Pentium MMX optimization possible. Implementation has been done to incorporate the proposed IntDCT into the H.263+ coder, and the resulting system performs equally well as the original. Further extension to the MPEG coder is straightforward. The proposed IntDCT is reversible, with a low level of power consumption, and is very suitable for source coding, and communication, etc. in a mobile environment.
视频压缩采用整数DCT
本文描述了利用Walsh-Hadamard变换和提升方案实现整数离散余弦变换(IntDCT)。实现采用移位和加法的形式,所有内部节点具有有限的精度。提出了一种复杂度为45加18移的通用8点整数DCT (FloatDCT)方案,其性能与浮点数DCT相当。对于这个具有8位输入的特定方案,即使所有内部节点都被限制为16位字,也可以保留完美的重构(PR),从而使Pentium MMX优化成为可能。已经完成了将提议的IntDCT合并到H.263+编码器中的实现,并且最终系统的性能与原始系统一样好。进一步扩展到MPEG编码器是直截了当的。所提出的IntDCT是可逆的,功耗低,非常适合在移动环境中进行源编码和通信等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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