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Adaptive echo suppression method based on affine projection algorithm in acoustic emission detection

机译:基于仿射投影算法的自适应回声抑制方法在声发射检测中的应用

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Acoustic emission (AE) technology is popularly applied to damage detection. Boundary reflection of the AE signal is believed as a reason of detecting error. The objective of this work is to propose an adaptive filter method for single source damage detection to eliminate the echo component in the acoustic emission sensor signal and obtain a pure AE signal for the subsequent damage analysis. In this paper, we present the frame model of the adaptive echo suppression system. Two adaptive filtering algorithm—normalized least mean squares (NLMS) algorithm and affine projection algorithm (APA) are applied to estimate the coefficients of the reflection path. Based on these theories, we propose an adaptive echo suppression (AES) method for AE sensor signals and verify its effectiveness by experiments. The results show that the APA-based AES method has faster convergence rate, smaller residual error and better filter performance than the NLMS-based AES method.
机译:声发射(AE)技术已广泛应用于损伤检测。 AE信号的边界反射被认为是检测误差的原因。这项工作的目的是提出一种用于单源损伤检测的自适应滤波器方法,以消除声发射传感器信号中的回声分量,并获得纯AE信号用于后续损伤分析。在本文中,我们提出了自适应回声抑制系统的帧模型。两种自适应滤波算法-归一化最小均方(NLMS)算法和仿射投影算法(APA)用于估计反射路径的系数。基于这些理论,我们提出了一种针对AE传感器信号的自适应回声抑制(AES)方法,并通过实验验证了其有效性。结果表明,与基于NLMS的AES方法相比,基于APA的AES方法具有更快的收敛速度,较小的残差和更好的滤波性能。

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