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首页> 外文期刊>Advances in Structural Engineering >Design and performance validation of a compact wireless ultrasonic device for localized damage detection
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Design and performance validation of a compact wireless ultrasonic device for localized damage detection

机译:用于局部损伤检测的紧凑型无线超声波设备的设计和性能验证

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摘要

Recent years have seen growing adoption of wireless structural sensor nodes that can significantly reduce the cost and installation effort of a structural health monitoring system. While previous wireless sensor development has mainly focused upon dynamic and vibration measurements at lower frequency domains, in this study, a new wireless ultrasonic sensing node capable of megahertz excitation and sampling is proposed. In addition to presenting the design of the wireless ultrasonic sensing node, experimental notch test and fatigue test of a dog-bone specimen are described in this article. The experimental results demonstrate that the ultrasonic characteristics of surface cracks can be identified in both scenarios with the proposed wireless sensor node. Furthermore, a signal processing procedure is proposed to obtain an accurate estimation of the ultrasonic signal amplitude, which can be a key indicator for crack identification. The procedure involves signal reconstruction with the cardinal sine function and envelope detection using discrete Hilbert transform.
机译:近年来,越来越多地采用无线结构传感器节点,可以显着降低结构健康监控系统的成本和安装工作量。尽管先前的无线传感器开发主要集中在低频域的动态和振动测量,但在这项研究中,提出了一种能够进行兆赫兹激励和采样的新型无线超声传感节点。除了介绍无线超声传感节点的设计外,本文还介绍了狗骨头标本的实验陷波测试和疲劳测试。实验结果表明,利用所提出的无线传感器节点,可以在两种情况下识别表面裂纹的超声特征。此外,提出了一种信号处理程序来获得对超声信号幅度的准确估计,这可以作为裂纹识别的关键指标。该过程涉及具有基本正弦函数的信号重建和使用离散希尔伯特变换的包络检测。

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