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A high-performance and memory-efficient VLSI architecture with parallel scanning method for 2-D lifting-based discrete wavelet transform

机译:具有并行扫描方法的高性能且高效存储的VLSI架构,用于基于二维提升的离散小波变换

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摘要

In this paper, we present a high performance and memory-efficient pipelined architecture with parallel scanning method for 2-D lifting-based DWT in JPEG2000 applications. The Proposed 2-D DWT architecture are composed of two 1-D DWT cores and a 2times2 transposing register array. The proposed 1-D DWT core consumes two input data and produces two output coefficients per cycle, and its critical path takes one multiplier delay only. Moreover, we utilize the parallel scanning method to reduce the internal buffer size instead of the line-based scanning method. For the NtimesN tile image with one-level 2-D DWT decomposition, only 4N temporal memory and the 2times2 register array are required for 9/7 filter to store the intermediate coefficients in the column 1-D DWT core. And the column-processed data can be rearranged in the transposing array. According to the comparison results, the hardware cost of the 1-D DWT core and the internal memory requirements of proposed 2-D DWT architecture are smaller than other familiar architectures based on the same throughput rate. The implementation results show that the proposed 2-D DWT architecture can process 1080 p HDTV pictures with five-level decomposition at 30 frames/sec.
机译:在本文中,我们针对JPEG2000应用中基于二维提升的DWT提出了一种具有并行扫描方法的高性能,内存高效流水线架构。提出的2-D DWT体系结构由两个1-D DWT内核和一个2×2转置寄存器阵列组成。提出的一维DWT内核在每个周期消耗两个输入数据并产生两个输出系数,其关键路径仅占用一个乘法器延迟。此外,我们使用并行扫描方法来减少内部缓冲区的大小,而不是基于行的扫描方法。对于具有一级2-D DWT分解的NtimesN瓦片图像,9/7滤波器只需要4N临时存储器和2times2寄存器阵列即可将中间系数存储在列1-D DWT核中。列处理的数据可以在转置数组中重新排列。根据比较结果,基于相同的吞吐率,一维DWT内核的硬件成本和所提出的二维维DWT体系结构的内部存储器需求要比其他熟悉的体系结构小。实施结果表明,所提出的2-D DWT架构可以以30帧/秒的速率对视频进行五级分解处理1080p HDTV图像。

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