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首页> 外文期刊>IEEE Transactions on Circuits and Systems for Video Technology >Generic RAM-based architectures for two-dimensional discrete wavelet transform with line-based method
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Generic RAM-based architectures for two-dimensional discrete wavelet transform with line-based method

机译:基于行方法的二维离散小波变换的基于RAM的通用体系结构

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摘要

In this paper, three generic RAM-based architectures are proposed to efficiently construct the corresponding two-dimensional architectures by use of the line-based method for any given hardware architecture of one-dimensional (1-D) wavelet filters, including conventional convolution-based and lifting-based architectures. An exhaustive analysis of two-dimensional architectures for discrete wavelet transform in the system view is also given. The first proposed architecture is for 1-level decomposition, which is presented by introducing the categories of internal line buffers, the strategy of optimizing the line buffer size, and the method of integrating any 1-D wavelet filter. The other two proposed architectures are for multi-level decomposition. One applies the recursive pyramid algorithm directly to the proposed 1-level architecture, and the other one combines the two previously proposed architectures to increase the hardware utilization. According to the comparison results, the proposed architecture outperforms previous architectures in the aspects of line buffer size, hardware cost, hardware utilization, and flexibility.
机译:在本文中,提出了三种基于RAM的通用体系结构,以针对任何给定的一维(1-D)小波滤波器的硬件体系结构,包括常规的卷积-基于基础架构和基于提升的架构。还给出了在系统视图中对离散小波变换的二维体系结构的详尽分析。首先提出的体系结构是用于1级分解的,它通过介绍内部行缓冲器的类别,优化行缓冲器大小的策略以及集成任何一维小波滤波器的方法来表示。提出的其他两个体系结构用于多级分解。一种是将递归金字塔算法直接应用于所提出的1级体系结构,而另一种则将先前提出的两种体系结构结合起来以提高硬件利用率。根据比较结果,提出的体系结构在行缓冲区大小,硬件成本,硬件利用率和灵活性方面都优于以前的体系结构。

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