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High performance 2D parallel block-filtering system for real-time imaging applications using the Share ADSP21060

机译:使用Share ADSP21060的高性能2D并行块滤波系统,用于实时成像应用

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摘要

A simple and efficient design and implementation of the two-dimensional (2D) parallel block-filtering algorithm by fast number theoretic transforms is presented. The algorithm is generalized to accommodate any filter size for optimum segmentation of the input data in order to achieve efficient filtering and optimal parallelization. The 2D algorithm is found to improve the performance of digital filtering systems by segmenting the 2D input into smaller block sizes, which are shown to be efficient and lead to highly parallel implementation. In this paper the parallel architecture of the 2D block-filtering method is presented and the implementation of fast 2D block filtering using the 2D new Mersenne number transform (2D NMNT) for digital filtering is demonstrated on a multiprocessor platform. The mathematical derivations of the input stage, output stage and the direct 2D FIR filtering equation are also given. The algorithm's efficiency is tested, and new results are given showing an improved performance, as evidenced by the highly parallel algorithm structure and the use of smaller transform sizes.
机译:提出了一种基于快速数论变换的二维并行块滤波算法的简单有效设计与实现。该算法被通用化以适应用于输入数据的最佳分割的任何滤波器大小,从而实现有效的滤波和最佳的并行化。发现2D算法可通过将2D输入分割成较小的块大小来提高数字滤波系统的性能,这显示出效率很高并导致高度并行的实现。本文介绍了2D块滤波方法的并行体系结构,并在多处理器平台上演示了使用2D新梅森数变换(2D NMNT)进行数字滤波的快速2D块滤波的实现。还给出了输入级,输出级和直接2D FIR滤波方程的数学推导。测试了该算法的效率,并给出了新的结果,这些结果显示了改进的性能,这由高度并行的算法结构和使用较小的变换大小来证明。

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