电磁声换能器
声学
脉冲压缩
信号(编程语言)
计算机科学
传感器
图像分辨率
材料科学
超声波传感器
超声波检测
物理
电信
人工智能
程序设计语言
雷达
作者
Qiangxin Li,Jian Feng,Qi Xiao,Xiong Gao
标识
DOI:10.1109/lmag.2023.3307296
摘要
The lowest order mode of shear-horizontal electromagnetic acoustic transducer (SH0-EMAT) typically exhibits a low signal-to-noise ratio (SNR) and poor spatial resolution in defect detection. To solve this issue, this letter proposes a crack identification and location method based on dual reception magnetic encoded spatial pulse compression technology (D-MSPCT). On the one hand, the proposed method implements spatial pulse compression technology by adjusting the spatial distribution of the magnetic field to obtain a high amplitude and narrow pulse detection signal. On the other hand, this method multiplexes the excitation EMAT as a receiver through signal processing technology, so that the position of cracks can be more accurately judged by analyzing the signals of the dual EMATs. Most importantly, this method does not require additional EMAT and complex excitation equipment. Finally, a simulation model was built to verify the proposed method. The simulation results show that compared with the detection signal of the traditional method, the SNR is improved by over 1.1 dB, and the spatial resolution is improved by over 18%. Besides, the proposed method can effectively distinguish the crack defects on both sides of EMATs and the localization accuracy exceeds 95%.
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