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Pulse Compression in Nondestructive Testing Applications: Reduction of Near Sidelobes Exploiting Reactance Transformation

机译:非破坏性测试应用中的脉冲压缩:减少侧边的侧腹裂缝漏洞抗抵抗转变

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摘要

Pulse compression (PuC) is exploited in several applications, where the impulse response of a linear system must be estimated in a noisy environment. In nondestructive testing (NDT), PuC based on frequency-modulated signals is applied with sensors of different types. The presence of sidelobes in the impulse response retrieved after the PuC is a major drawback of the method as it degrades the quality of the estimation. To limit this effect, the matched filter is usually shaped by means of windows. Here, a windowing function based on reactance transformation is proposed that outperforms the most used ones in terms of near-sidelobes level reduction and sidelobes oscillations suppression. Numerical and experimental data were used to validate the technique. It is shown that the proposed approach is particularly suitable for those NDT techniques, such as eddy current and thermography that use very broadband excitations. The proposed window function is first introduced and applied to linear frequency-modulated signals and then extended to nonlinear frequency-modulated signals, which are needed in some applications. The quite general framework introduced in this paper for designing frequency-modulated signals and optimizing sidelobes is of general validity and can be successfully exploited in any application relying on chirp PuC.
机译:脉冲压缩(PUC)在若干应用中被利用,其中线性系统的脉冲响应必须在嘈杂的环境中估计。在非破坏性测试(NDT)中,基于频率调制信号的PUC应用于不同类型的传感器。在PUC之后检索脉冲响应中的侧瓣的存在是该方法的主要缺点,因为它降低了估计的质量。为了限制这种效果,匹配的滤波器通常通过窗口塑造。这里,提出了一种基于电抗变换的窗口函数,以近侧腹部降低和侧瓣振荡抑制而优异地优于最常用的函数。数值和实验数据用于验证该技术。结果表明,所提出的方法特别适用于那些NDT技术,例如使用非常宽带激励的涡流和热成像。所提出的窗口功能首先引入并应用于线性频率调制信号,然后扩展到非线性频率调制信号,这在某些应用中需要。本文中引入的非常一般的框架用于设计频率调制信号并优化Sidelobes具有一般有效性,并且可以在依赖于Chirp PUC的任何应用程序中成功开发。

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