模糊逻辑支持的自适应傅立叶分析频率范围估计

A. Várkonyi-Kóczy
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引用次数: 2

摘要

自适应傅立叶分析仪用于测量未知或变化基频的周期信号。典型的应用是与旋转机械和校准设备相关的振动测量和主动噪声控制,可以通过自适应避免线路频率的变化。高频应用具有局限性,因为这些分析仪的计算复杂性相对较高,因为要测量(或抑制)的谐波分量的数量通常高于SO。近年来,基于变换域信号处理的概念和简单线性组合器的自适应,提出了一种用于自适应傅立叶分析的快速滤波器组结构。它导致上述计算复杂性的降低,但是为了正确使用,我们必须对基频(或频率)的范围进行预估计,以便能够设置应用的单输入多输出滤波器组,这在许多情况下会导致操作中的显着且可能不可容忍的延迟。本文提出了一种新的模糊逻辑支持的频率范围估计方法,使得在未知信号的前半段周期内进行频率估计成为可能,即可以无延迟地进行自适应和傅立叶分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fuzzy Logic Supported Frequency Range Estimation for Adaptive Fourier Analysis
Adaptive Fourier analyzers have been developed for measuring periodic signals with unknown or changing fundamental frequency. Typical applications are vibration measurements and active noise control related to rotating machinery and calibration equipment that can avoid the changes of the line frequency by adaptation. Higher frequency applications have limitations since the computational complexity of these analyzers are relatively high as the number of harmonic components to be measured (or suppressed) is usually above SO. Recently, a fast-filter bank structure has been proposed for adaptive Fourier analysis based on the combination of the concept of transform domain signal processing and the adaptation of a simple linear combiner. It results in the reduction of the above computational complexity, however for the correct use we have to have pre-estimation about the range of the fundamental frequency (or frequencies) to be able to set the applied single-input multiple-output filter-banks, which in many cases causes significant and possibly non-tolerable delay in the operation. In this paper a new fuzzy logic supported frequency range estimation procedure is proposed which makes possible to execute the frequency estimation in the first half of the period of the unknown signal, i.e. the adaptation and Fourier Analysis can be performed without any delay.
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