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Sensor-Based Vibration Signal Feature Extraction Using an Improved Composite Dictionary Matching Pursuit Algorithm

机译:改进的复合字典匹配追踪算法提取基于传感器的振动信号特征

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摘要

This paper presents a new method for a composite dictionary matching pursuit algorithm, which is applied to vibration sensor signal feature extraction and fault diagnosis of a gearbox. Three advantages are highlighted in the new method. First, the composite dictionary in the algorithm has been changed from multi-atom matching to single-atom matching. Compared to non-composite dictionary single-atom matching, the original composite dictionary multi-atom matching pursuit (CD-MaMP) algorithm can achieve noise reduction in the reconstruction stage, but it cannot dramatically reduce the computational cost and improve the efficiency in the decomposition stage. Therefore, the optimized composite dictionary single-atom matching algorithm (CD-SaMP) is proposed. Second, the termination condition of iteration based on the attenuation coefficient is put forward to improve the sparsity and efficiency of the algorithm, which adjusts the parameters of the termination condition constantly in the process of decomposition to avoid noise. Third, composite dictionaries are enriched with the modulation dictionary, which is one of the important structural characteristics of gear fault signals. Meanwhile, the termination condition of iteration settings, sub-feature dictionary selections and operation efficiency between CD-MaMP and CD-SaMP are discussed, aiming at gear simulation vibration signals with noise. The simulation sensor-based vibration signal results show that the termination condition of iteration based on the attenuation coefficient enhances decomposition sparsity greatly and achieves a good effect of noise reduction. Furthermore, the modulation dictionary achieves a better matching effect compared to the Fourier dictionary, and CD-SaMP has a great advantage of sparsity and efficiency compared with the CD-MaMP. The sensor-based vibration signals measured from practical engineering gearbox analyses have further shown that the CD-SaMP decomposition and reconstruction algorithm is feasible and effective.
机译:提出了一种复合字典匹配追踪算法的新方法,该方法应用于齿轮箱振动传感器信号特征提取和故障诊断。新方法突出了三个优点。首先,算法中的复合字典已从多原子匹配更改为单原子匹配。与非复合字典单原子匹配相比,原始的复合字典多原子匹配追踪(CD-MaMP)算法可以在重构阶段实现降噪,但不能显着降低计算成本,提高分解效率阶段。因此,提出了一种优化的复合字典单原子匹配算法(CD-SaMP)。其次,提出了基于衰减系数的迭代终止条件,以提高算法的稀疏性和效率,在分解过程中不断调整终止条件的参数,避免产生噪声。第三,复合字典充实了调制字典,这是齿轮故障信号的重要结构特征之一。同时,针对带有噪声的齿轮仿真振动信号,讨论了CD-MaMP和CD-SaMP之间迭代设置的终止条件,子特征字典的选择以及运行效率。基于传感器的仿真振动信号结果表明,基于衰减系数的迭代终止条件大大提高了分解稀疏度,达到了良好的降噪效果。此外,与傅立叶字典相比,调制字典具有更好的匹配效果,与CD-MaMP相比,CD-SaMP具有稀疏性和高效性。通过实际工程齿轮箱分析测得的基于传感器的振动信号进一步表明,CD-SaMP分解和重建算法是可行和有效的。

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