二维离散小波变换的可扩展结构

J.C. Limqueco, M. Bayoumi
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引用次数: 22

摘要

我们提出了一种高效和简单的类似收缩的架构,用于实现二维离散小波变换(DWT)。信号的“近似”分量和“详细”分量在第一个八度中同时计算,在其他八度中交替计算。每个处理元素都有自己的本地内存,用于存储中间数据和仅限其邻居的最小路由需求。所建议的体系结构对每个八度电平使用相同的时钟频率,并且对于j=2体系结构和N/sup 2/+N周期周期具有100%的利用率。该架构可针对不同的滤波器长度(可被2整除)和不同的八度程级别进行扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A scalable architecture for 2-D discrete wavelet transform
We propose an efficient and simple systolic-like architecture for VLSI implementation of a 2-D discrete wavelet transform (DWT). The "approximation" and "detailed" components of a signal are computed simultaneously in the first octave and alternately in the other octave(s). Each processing element has its own local memory for storing intermediate data and minimum routing requirement limited only to its neighbors. The proposed architecture uses the same clock frequency for every octave level and has a 100% utilization for j=2 architecture, and N/sup 2/+N period cycle. The architecture is scalable for different filter lengths (divisible by 2) and different octave levels.
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