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Equalization Of Ultrasonic Transducers Based On Evolutionary Algorithm And Iir Lattice Filter

机译:基于进化算法和Iir格子滤波器的超声换能器均衡

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摘要

In ultrasonic non-destructive evaluation (NDE) application, band-pass ultrasonic transducer is recognized as a main factor degrading the time fidelity of inspection. Due to low computational complexity and simplicity, finite impulse response (FIR) equalizer techniques have been applied to undo the band-pass response of the narrowband ultrasonic transducers in our previous work. Compared to FIR filters, infinite impulse response (IIR) structures exhibit considerable advantages including the potential reduction of computational complexity and the increased accuracy with equivalent order. However, the application of the IIR filters is seriously hindered by their drawbacks such as the multimodal performance surface and stability issue. Aiming to mitigate the limitations posed by the IIR filters, this paper introduces an evolutionary algorithm-based IIR filter implemented as the lattice structure which greatly simplifies the stability control and then applies it in the physical ultrasonic transducer equalization. The experimental results on numerical data as well as the practical ultrasonic NDE signals are provided to demonstrate the effectiveness of the proposed method.
机译:在超声无损评估(NDE)应用中,带通超声换能器被认为是降低检查时间保真度的主要因素。由于较低的计算复杂度和简单性,在我们先前的工作中,已应用有限脉冲响应(FIR)均衡器技术来消除窄带超声换能器的带通响应。与FIR滤波器相比,无限冲激响应(IIR)结构显示出相当大的优势,包括潜在地降低了计算复杂性和提高了等效顺序的精度。但是,IIR滤波器的应用由于其缺点(如多峰性能表面和稳定性问题)而受到严重阻碍。为了减轻IIR滤波器的局限性,本文介绍了一种基于进化算法的IIR滤波器,实现为点阵结构,大大简化了稳定性控制,然后将其应用于物理超声换能器均衡。数值数据和实际的超声NDE信号的实验结果提供了证明该方法的有效性。

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