Department of Electronics, Computer Sciences and Systems (DEIS), University of Bologna, Bologna, Italy.
IEEE Trans Ultrason Ferroelectr Freq Control. 2009 Oct;56(10):2232-40. doi: 10.1109/TUFFC.2009.1305.
Guided wave (GW) dispersion curves can be extracted from a time-transient measurement by means of timefrequency representations (TFRs). Unfortunately, any TFR is subject to the time-frequency uncertainty principle. This, in general, limits the capability of TFRs to characterize closely spaced guided modes over a wide frequency range. To overcome this limitation, we implemented a new warped frequency transform that presents enhanced mode extraction capabilities because of a more flexible tiling of the time-frequency domain. The tiling is designed to match the dispersive spectro-temporal structure of a GW by selecting an appropriate map of the time-frequency plane. The proposed transformation is fast, invertible, and covariant to group delay shifts. An application to Lamb waves propagating in an aluminum plate is presented. Time-transient GWs propagation events obtained both numerically and experimentally are considered. The results show that the proposed warped frequency transform limits the interference patterns which appear with other TFRs and produces a sparse representation of the Lamb wave pattern that can be suitable for identification and characterization purposes.
导波(GW)频散曲线可以通过时频表示(TFR)从时间瞬态测量中提取。不幸的是,任何 TFR 都受到时频不确定性原理的限制。这通常限制了 TFR 在宽频率范围内表征近距离引导模式的能力。为了克服这一限制,我们实现了一种新的扭曲频率变换,由于时间-频率域的更灵活的平铺,它具有增强的模式提取能力。这种平铺是为了通过选择时间-频率平面的适当映射来匹配 GW 的色散谱时结构。所提出的变换快速、可逆且对群延迟移位具有协变性。给出了在铝板中传播的兰姆波的应用。考虑了数值和实验获得的时间瞬态 GW 传播事件。结果表明,所提出的扭曲频率变换限制了其他 TFR 出现的干涉模式,并产生了兰姆波模式的稀疏表示,可适用于识别和特征化目的。