小波包树优化应用的计算问题

Scărlătescu Lucian Cristian, M. Nicolae, P. Nicolae, I. Nicolae, D. Purcaru
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引用次数: 7

摘要

基于小波包变换(WPT)的波形分解提供了许多优点,但需要大量的计算资源(运行时间和内存)。一些作者先前的研究关注的是5级WPT树最终节点中奇次谐波所提供的能量权重所提供的特殊性质。考虑到现代数据采集系统具有更好的采样率,进行了新的研究。研究了另一种具有7个层次的拓扑结构,并获得了相对于更高谐波阶(最高256阶)的有趣结果,这些结果涉及到偶谐波阶和奇谐波阶。首先对受单一谐波污染的人工波形进行了研究,揭示了受同一组谐波阶影响的节点簇的有趣方面。揭示了奇数和偶数次谐波的不同配对模式,以及对节点的决策与某些次谐波更相关。然后,研究了最终节点对谐波阶限灵敏度的可能实际应用。获得的结果为简单的计算技术提供了支持,这些技术旨在尽可能地减少WPT分析所需的计算资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computational Aspects Concerned with the Optimized Use of Wavelet Package Trees
Decompositions of electric waveforms relying on the Wavelet Package Transform (WPT) provide numerous advantages but requires a significant amount of computational resources (runtime and memory). Previous study of some of the authors were concerned with special properties provided by the weights of energies supplied by odd harmonics in the final nodes of a WPT trees with 5 levels. New researches were made now considering the better sampling rate of modern data acquisition systems. Another topology, with 7 levels, was studied, and interesting results relative to much higher harmonic orders (up to the rank of 256) were obtained with respect to both even and odd harmonic orders. Studies on artificial waveforms polluted with a single harmonic were made firstly, revealing interesting aspects relative to clusters of nodes affected by the same group of harmonic orders. Different pairing patterns of odd and even harmonics were revealed, along with decisions on nodes being more relevant for certain harmonics. Afterward, studies on possible practical application of final nodes sensitivity to limited ranges of harmonic orders were made. The obtained results provide the support for simple computational techniques meant to reduce as much as possible the computational resources required by the WPT analysis.
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