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Investigation of Frequency Mixing Techniques for Eddy Current Testing of Steam Generator Tubes in Nuclear Power Plants

机译:核电站蒸汽发生器管涡流试验频率混合技术研究

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In eddy current testing (ECT) of steam generator tubes in nuclear power plants, it is very important to extract flaw signals from the signals compound by flaws and supporting structures. To perform such an important task, the multifrequency ECT methods are widely adopted since they have a well-known capability of extracting the flaw signal from the compound signals. Therefore, various frequency mixing algorithms have been proposed up to now. In the present work, two different frequency mixing algorithms, a time-domain optimization method and a discrete cosine transform (DCT) based optimization method, are investigated using experimental signals captured from a ASME standard tube. In this paper, we discuss the basic principles and the performances of these two frequency mixing techniques.
机译:在核电站蒸汽发生器管的涡流测试(ECT)中,通过缺陷和支撑结构从信号化合物中提取缺陷信号非常重要。为了执行这么重要的任务,广泛采用了多频性的方法,因为它们具有从复合信号中提取缺陷信号的众所周知的能力。因此,已经提出了各种频率混合算法。在本工作中,使用从ASME标准管捕获的实验信号研究了两个不同的频率混合算法,基于时域优化方法和离散余弦变换(DCT)的优化方法。在本文中,我们讨论了这两个频率混合技术的基本原理和性能。

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