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Multiwindow discrete Gabor transform using parallel lattice structures

机译:使用并行晶格结构的多窗道离散Gabor变换

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The multiwindow discrete Gabor transform (M-DGT) is an effective time-frequency analysis tool to analyse time-varying signals containing components with multiple frequencies. In this study, fast block time-recursive methods for computing the M-DGT coefficients of a signal and the reconstruction of the signal from the transform coefficients are presented with steps as listed, respectively, in Algorithms 1 and 2, and their implementations using unified parallel lattice structures are also given. The proposed algorithms consisting of Algorithms 1 and 2 for respective forward and inverse transforms are compared to (i) those of the existing serial algorithms in terms of computational complexity and time; and (ii) those of the existing parallel algorithms in terms of hardware complexity. The results indicate that the proposed algorithm is fast in computing M-DGT coefficients of a signal and reconstructing the signal with a reduced hardware complexity.
机译:多窗道离散Gabor变换(M-DGT)是一种有效的时频分析工具,用于分析包含多个频率的组件的时变信号。在该研究中,用于计算信号的M-DGT系数的快速块时间递归方法以及来自变换系数的信号的重建,分别在算法1和2中分别在列出的步骤以及使用统一的实现还给出了平行的晶格结构。在计算复杂性和时间和时间方面,将所提出的算法1和2组成的算法1和2组成的算法1和2组成的算法与(i)现有串行算法的算法; (ii)在硬件复杂性方面的现有平行算法的那些。结果表明,所提出的算法在计算信号的M-DGT系数中快速,并重构具有减少的硬件复杂度的信号。

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