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Use of Time-Dependent Multispectral Representation of Magnetic Barkhausen Noise Signals for the Needs of Non-Destructive Evaluation of Steel Materials

机译:利用Barkhausen电磁噪声信号的时变多谱表示法对钢材进行无损评估

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摘要

Due to the existing relationship between microstructural properties and magnetic ones of the ferromagnetic materials, the application potential of the magnetic Barkhausen noise (BN) method to non-destructive testing is constantly growing. However, the stochastic nature of the Barkhausen effect requires the use of advanced signal processing methods. Recently, the need to apply time-frequency (TF) transformations to the processing of BN signals arose. However, various TF methods have been used in the majority of cases for qualitative signal conditioning and no extensive analysis of TF-based information has been conducted so far. Therefore, in this paper, the wide analysis of BN TF representation was carried out. Considering the properties of TF transformations, the Short-Time Fourier Transform (STFT) was used. A procedure for definition of the envelopes of the TF characteristic was proposed. To verify the quality of extracted features, an analysis was performed on the basis of BN signals acquired during stress loading experiments of steel elements. First, the preliminary experiments were processed for various parameters of the measuring system and calculation procedures. The feature extraction procedure was performed for different modes of TF representations. Finally, the distributions of TF features over the loading stages are presented and their information content was validated using commonly used features derived from time T and frequency F domains.
机译:由于铁磁性材料的微观结构特性和磁性之间存在着联系,因此巴克豪森磁性(BN)噪声方法在无损检测中的应用潜力正在不断增长。但是,巴克豪森效应的随机性要求使用先进的信号处理方法。近来,出现了将时频(TF)变换应用于BN信号的处理的需求。但是,在大多数情况下,已经使用了各种TF方法进行定性信号调节,到目前为止,尚未对基于TF的信息进行广泛的分析。因此,本文对BN TF表示进行了广泛的分析。考虑到TF变换的属性,使用了短时傅立叶变换(STFT)。提出了定义TF特性包络的程序。为了验证提取特征的质量,基于在钢构件的应力加载实验中获得的BN信号进行了分析。首先,对测量系统的各种参数和计算程序进行了初步实验。针对TF表示的不同模式执行了特征提取过程。最后,介绍了TF特征在加载阶段的分布,并使用了从时间T和频率F域导出的常用特征验证了它们的信息内容。

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