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Improving an adaptive filtering system for ultrasonic testing

机译:改进用于超声测试的自适应过滤系统

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A multi-stage adaptive filter has been reported in a previous study as an advanced adaptive noise cancellation system for ultrasonic non-destructive testing applications. However, the multi-stage adaptive filter is limited by the slow convergence speed of its least-mean-squares (LMS) algorithm, as well as additional implementation processes and increased computational complexity. This work proposes to overcome these limitations by initialising the second-stage filter with coefficients obtained from the first stage and by using a step-size estimator for the first-stage filter. Furthermore, a sign LMS filter is proposed to replace the conventional LMS algorithm in the filter to reduce the computational complexity. Flaw echo signals masked by grain noise, obtained from a stainless steel block with a side-drilled hole and from two welded plates with a root crack and a slag inclusion, were used to evaluate the performance of the filters. The results showed improvements in convergence speed and signal-to-noise ratio. The sign LMS algorithm was successfully implemented in the proposed multi-stage filter, offering a less computationally complex, alternative filter.
机译:在先前的研究中,已经报道了一种多级自适应滤波器,作为用于超声无损检测应用的高级自适应噪声消除系统。但是,多级自适应滤波器受到其最小均方(LMS)算法收敛速度慢,附加的实现过程和计算复杂性的限制。这项工作建议通过用从第一级获得的系数初始化第二级滤波器,并通过对第一级滤波器使用步长估计器来克服这些限制。此外,提出了符号LMS滤波器来代替滤波器中的常规LMS算法,以降低计算复杂度。由带有侧孔的不锈钢块和两块带有根部裂纹和夹渣的焊接板获得的,被颗粒噪声掩盖的缺陷回波信号被用于评估过滤器的性能。结果表明收敛速度和信噪比得到了改善。符号LMS算法已在提出的多级滤波器中成功实现,从而提供了一个计算复杂度较低的替代滤波器。

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