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Range Sidelobes Reduction for Pulse-Compression NDT based on Reactance Transformation

机译:基于电抗变换的脉冲压缩无损检测范围旁瓣减小

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Pulse compression is exploited in several measurement procedures where the impulse response of a linear system must be estimated in a noisy environment. In nondestructive testing (NDT), pulse compression based on frequency-modulated chirp signals is applied with sensors of different types. However, the presence of sidelobes in the impulse response retrieved after pulse compression is a major drawback of the method compared to the pulse excitation approach and it degrades the quality of the estimation. To limit this effect, the matched filter is usually shaped by means of windows. In this paper we propose a strategy based on reactance transformation to define a windowing function that outperforms the most used windows in term of near-sidelobes suppression, thus improving the range resolution of the detection system. The paper shows that the proposed filtering technique is particularly suitable for those NDT techniques such as eddy-current and thermography that make use of very broadband excitations. The proposed technique is validated on simulated and experimental test data.
机译:在几种测量程序中都采用了脉冲压缩,其中必须在嘈杂的环境中估算线性系统的脉冲响应。在无损检测(NDT)中,基于调频线性调频信号的脉冲压缩将应用于不同类型的传感器。但是,与脉冲激励方法相比,脉冲压缩后恢复的脉冲响应中存在旁瓣是该方法的主要缺点,并且降低了估计的质量。为了限制这种效果,匹配的滤镜通常通过窗口进行整形。在本文中,我们提出了一种基于电抗变换的策略,以定义在近旁瓣抑制方面优于最常用窗口的加窗函数,从而提高了检测系统的距离分辨率。本文表明,所提出的滤波技术特别适合那些利用非常宽带激发的无损检测技术,例如涡流和热成像技术。所提出的技术在模拟和实验测试数据上得到了验证。

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