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Efficient parallel architecture for multi-level forward discrete wavelet transform processors

机译:多级前向离散小波变换处理器的高效并行架构

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摘要

A resource efficient and high-performance architecture for a two-dimensional multi-level discrete wavelet transform processor is presented in this paper. The JPEG2000 standard integer lossless 5-3 filter has been implemented. It achieves optimal hardware utilisation with minimal combinational logic block slices and high frequency of operation. To reduce the hardware complexity and to achieve high performance the proposed architecture implements lifting scheme with a single multiplier-free processing element to perform both predict and update operations. Symmetric extension is used at image boundaries without requiring any extra clock cycle. The generic architecture is very flexible and can perform up to five levels of forward transform on any arbitrary image size. Synthesis of the 5-level architecture on Xilinx Virtex 5 FPGA shows that the processor can achieve a maximum frequency of operation of 221.44 MHz. The reduced hardware complexity and high frequency of operation render the design suitable for incorporation in image processing applications requiring fast operations. The 5-level design has been successfully implemented on a Xilinx Spartan 3E FPGA, utilising only 1104 slices for a 512-by-512 pixel test image, the lowest hardware requirements for a 5-level discrete wavelet transform processor reported to date.
机译:本文提出了一种资源高效,高性能的二维多层离散小波变换处理器。 JPEG2000标准整数无损5-3滤波器已实现。它以最小的组合逻辑块片和高操作频率实现了最佳的硬件利用率。为了降低硬件复杂性并实现高性能,提出的体系结构使用单个无乘数处理元素实现提升方案,以执行预测和更新操作。在图像边界处使用对称扩展,不需要任何额外的时钟周期。通用体系结构非常灵活,可以在任意图像大小上执行多达五个级别的正向变换。在Xilinx Virtex 5 FPGA上的5级体系结构的综合表明,该处理器可以达到221.44 MHz的最大工作频率。降低的硬件复杂性和高操作频率使得该设计适合于并入需要快速操作的图像处理应用中。该5级设计已在Xilinx Spartan 3E FPGA上成功实现,仅使用1104条用于512 x 512像素测试图像,这是迄今为止报道的5级离散小波变换处理器的最低硬件要求。

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