Application of Pulse Compression Technology in Electromagnetic Ultrasonic Thickness Measurement

Sheng Xia, Zhan-peng Li, Chuan-liu Jiang, Shu-juan Wang, K. Wang
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引用次数: 8

Abstract

Electromagnetic ultrasonic thickness measurement has the advantages of no couplant and no contact. But the signals are so weak that they are easily submerged in the noise. So, the pulse compression technology is applied to raise the signal to noise ratio and lift-off distance effectively. The barker sequences are set as transmitting pulse in the measurement system, the received signals are processed with pulse compression in the experiments. By comparing the performances of barker code with single pulse requiring high levels average filtering, the signal to noise ratio is highly improved. The 5 × 13 combined barker sequence performs best among the different combined barker sequences. Its signal to noise ratio reaches 20.11 dB and the maximum lift-off is up to 3.0 mm due to the increasement of the total transmission power.
脉冲压缩技术在电磁超声测厚中的应用
电磁超声测厚具有无耦合、无接触等优点。但是这些信号非常微弱,很容易被淹没在噪音中。因此,采用脉冲压缩技术可以有效地提高信号的信噪比和起飞距离。在测量系统中,将巴克序列作为发射脉冲,实验中对接收到的信号进行脉冲压缩处理。通过对比巴克码与单脉冲高电平平均滤波的性能,大大提高了信噪比。在不同组合序列中,5 × 13组合序列表现最好。其信噪比达到20.11 dB,由于总发射功率的增加,最大升程可达3.0 mm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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