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A computational kernel for fast and efficient compressed-domain calculations of wavelet subband energies

机译:小波子带能量的快速有效压缩域计算的计算内核

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摘要

This paper develops algorithms for calculating commonly used energy measures directly from the data stream of wavelet-compressed images. Incorporating these techniques into an underlying computational kernel allows many image-processing tasks to be efficiently implemented in the compressed domain. Compared to traditional decompress-process methods, the proposed techniques offer significant memory savings and reduce the computational load of the system. Experimental results show that the calculated energy values are accurate and obtained with less strain on system resources. The potential savings achieved by incorporating the proposed kernel are illustrated in a texture classification example.
机译:本文开发了直接从小波压缩图像的数据流中计算常用能量度量的算法。将这些技术整合到基础计算内核中可以使许多图像处理任务在压缩域中得到有效实现。与传统的解压缩方法相比,所提出的技术可节省大量内存并减少系统的计算负荷。实验结果表明,所计算出的能量值是准确的,并且对系统资源的压力较小。纹理分类示例说明了通过合并建议的内核而实现的潜在节省。

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