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3D Haar wavelet transform with dynamic partial reconfiguration for 3D medical image compression

机译:具有3D医学图像压缩的动态部分重配置的3D Haar小波变换

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This paper describes the design and implementation of 3D Haar wavelet transform (HWT) with transpose based computation and dynamic partial reconfiguration (DPR). As a result of the separability property of the multi-dimensional HWT, the proposed architecture has been implemented using a cascade of three N-point 1D HWT and two transpose memory for a 3D volume of N×N×N, suitable for 3D medical image compression. The proposed 3D HWT architectures were implemented on Xilinx Virtex-5 field programmable gate array (FPGA) using VHDL. An in-depth performance analysis and comparison has shown that DPR based implementation improves both speed and power consumption as well as reducing the hardware required for the system.
机译:本文介绍了基于转置的计算和动态部分重配置(DPR)的3D Haar小波变换(HWT)的设计和实现。由于多维HWT的可分离性,针对3×N×N的3D体积,使用三个N点1D HWT和两个转置存储器的级联实现了所提出的体系结构,适用于3D医学图像压缩。拟议的3D HWT架构是使用VHDL在Xilinx Virtex-5现场可编程门阵列(FPGA)上实现的。深入的性能分析和比较表明,基于DPR的实现既提高了速度和功耗,又减少了系统所需的硬件。

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