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Fabrication and Characterization of a Wavenumber-Spiral Frequency-Steerable Acoustic Transducer for Source Localization in Plate Structures

机译:用于板结构源定位的波数-螺旋频率可调谐声换能器的制备与表征

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This paper reports on the fabrication and the experimental characterization of a wavenumber frequency-steerable acoustic transducer (WS-FSAT). Here, the transducer is employed for the localization of broadband acoustic events corresponding to the propagation of guided elastic waves in an isotropic plate. The WS-FSAT records the plate response and defines the source location through a time-frequency analysis of the received signal. This is achieved by exploiting the frequency selective response of the transducer which directly maps the dominant component of the received signal to the direction of arrival of the incoming wave. This feature is the result of the spatial filtering effect produced by the characteristic shape of the sensing surface, which is designed in the wavenumber domain. Experiments are performed on a prototype fabricated on a polyvinylidene fluoride substrate mounted on an aluminum test plate. Tests are conducted for various source locations, and with multiple sources activated simultaneously. The results highlight the robustness of the proposed device, its good sensitivity and angular resolution, as well as the low complexity of hardware and signal processing. This paper suggests the WS-FSAT as an attractive solution for the detection of broadband acoustic events, such as impacts on structural substrates, and its potential use as part of active structural health monitoring systems based on pitch-catch or pulse-echo operations.
机译:本文报道了波数频率可控声换能器(WS-FSAT)的制作和实验特性。在此,该换能器用于定位与定向弹性波在各向同性平板中的传播相对应的宽带声事件。 WS-FSAT记录板响应,并通过对接收信号进行时频分析来定义源位置。这是通过利用换能器的频率选择性响应来实现的,该传感器将接收信号的主要成分直接映射到入射波的到达方向。该特征是由在波数域中设计的传感表面的特征形状产生的空间滤波效果的结果。实验是在安装在铝测试板上的聚偏二氟乙烯衬底上制作的原型上进行的。针对各种源位置进行测试,并同时激活多个源。结果突出了所提出设备的鲁棒性,良好的灵敏度和角度分辨率,以及较低的硬件和信号处理复杂性。本文建议将WS-FSAT作为检测宽带声学事件(如对结构基底的撞击)的有吸引力的解决方案,并将其作为基于音高捕获或脉冲回波操作的主动结构健康监测系统的一部分潜在使用。

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