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Multirate-Based Fast Parallel Algorithms for 2-D DHT-Based Real-Valued Discrete Gabor Transform

机译:基于二维DHT的实值离散Gabor变换的基于多速率的快速并行算法

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Novel algorithms for the multirate and fast parallel implementation of the 2-D discrete Hartley transform (DHT)-based real-valued discrete Gabor transform (RDGT) and its inverse transform are presented in this paper. A 2-D multirate-based analysis convolver bank is designed for the 2-D RDGT, and a 2-D multirate-based synthesis convolver bank is designed for the 2-D inverse RDGT. The parallel channels in each of the two convolver banks have a unified structure and can apply the 2-D fast DHT algorithm to speed up their computations. The computational complexity of each parallel channel is low and is independent of the Gabor oversampling rate. All the 2-D RDGT coefficients of an image are computed in parallel during the analysis process and can be reconstructed in parallel during the synthesis process. The computational complexity and time of the proposed parallel algorithms are analyzed and compared with those of the existing fastest algorithms for 2-D discrete Gabor transforms. The results indicate that the proposed algorithms are the fastest, which make them attractive for real-time image processing.
机译:提出了基于二维离散哈特利变换(DHT)的实值离散Gabor变换(RDGT)及其逆变换的多速率和快速并行实现的新算法。针对2-D RDGT设计了基于2D多速率的分析卷积器,而针对2-D逆RDGT设计了基于2-D多速率的综合卷积器。两个卷积器库中的每一个中的并行通道具有统一的结构,可以应用2-D快速DHT算法来加快计算速度。每个并行通道的计算复杂度很低,并且与Gabor过采样率无关。图像的所有二维RDGT系数是在分析过程中并行计算的,并且可以在合成过程中并行重建。分析了所提出的并行算法的计算复杂度和时间,并与现有的用于二维离散Gabor变换的最快算法进行了比较。结果表明,提出的算法是最快的,这使其对实时图像处理具有吸引力。

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