首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >An improved wavelet adaptive logarithmic threshold denoising method for analysing pressure signals in a transonic compressor
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An improved wavelet adaptive logarithmic threshold denoising method for analysing pressure signals in a transonic compressor

机译:跨音速压缩机压力信号分析的改进小波自适应对数阈值去噪方法

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This paper proposes an improved wavelet threshold denoising algorithm based on orthogonal wavelet transform. The algorithm, called adaptive logarithmic threshold denoising algorithm based on wavelet (ALTDAW), processes the dynamic pressure signals generated by a transonic axial compressor. Combined with an adaptive logarithmic threshold function, it sets the optimal threshold for each decomposition level. In this way, noise is effectively identified and eliminated. Since ALTDAW is adaptable, it reduces the maximum decomposition level, thereby decreasing the processing time and improving the computational efficiency. In numerical experiments, the performance of ALTDAW was compared with that of the classical soft and hard threshold algorithms. Relative to the classical algorithms, ALTDAW increased the signal-to-noise ratio (SNR) by 27.9% and 44.2%, and reduced the processing time by 38.5% and 37.6%, respectively. The practicality of the algorithm was validated on the complex dynamic pressure signals of a transonic axial compressor. When processing these signals, the algorithm depicted that disturbance passes through the tips and the spike three revolutions before the compressor stalls, consistent with the physical properties of transonic axial compressors.
机译:提出了一种改进的基于正交小波变换的小波阈值去噪算法。该算法称为基于小波的自适应对数阈值降噪算法(ALTDAW),用于处理跨音速轴向压缩机产生的动压力信号。结合自适应对数阈值功能,可为每个分解级别设置最佳阈值。这样,可以有效地识别并消除噪声。由于ALTDAW具有适应性,因此它降低了最大分解级别,从而减少了处理时间并提高了计算效率。在数值实验中,将ALTDAW的性能与经典的软阈值算法和硬阈值算法进行了比较。相对于经典算法,ALTDAW分别提高了27.9%和44.2%的信噪比(SNR),并减少了38.5%和37.6%的处理时间。该算法的实用性在跨音速轴向压缩机的复杂动压力信号上得到了验证。在处理这些信号时,该算法描述为扰动在压缩机失速之前通过了尖端和尖峰三圈,这与跨音速轴向压缩机的物理特性是一致的。

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