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Evaluation of portable ECT instruments with positioning capability

机译:评估具有定位功能的便携式ECT仪器

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In this paper two different low-cost eddy current testing (ECT) systems used in detecting and measuring defects in conductive surfaces are evaluated and its performance compared with a commercial equipment. Both developed systems include a probe with a giant mag-netoresistance (GMR) as the magnetic field sensor and a computer mouse pointer as the positioning system. This configuration, despite its low cost, allows better performances than commercial equipments because deeper defects can be detected due to the higher sensitivity of the GMR sensor, which is constant in a very large frequency range (10 Hz-1 MHz), but also because a precisely located graphical representation of the defect is delivered to the user due to the incorporated positioning system. Although having the same goal, both developed ECT system implementations differ on their architectures and signal processing algorithms. One system is based on a digital signal processor (DSP) where raw data is digitally processed and the other system uses analog circuits to process the acquired signals. This paper includes a detailed description of each implementation, the obtained results and a performance comparison with commercial equipment.
机译:本文评估了用于检测和测量导电表面缺陷的两种不同的低成本涡流测试(ECT)系统,并与商用设备进行了比较。两种已开发的系统都包括一个具有大磁阻(GMR)的探头作为磁场传感器,以及一个计算机鼠标指针作为定位系统。这种配置尽管价格低廉,却比商用设备具有更好的性能,因为由于GMR传感器具有更高的灵敏度(在非常大的频率范围(10 Hz-1 MHz)中恒定),因此可以检测到更深的缺陷。由于内置了定位系统,因此可以将精确定位的缺陷图形表示传递给用户。尽管有相同的目标,但两个已开发的ECT系统实现在体系结构和信号处理算法上都不同。一个系统基于数字信号处理器(DSP),其中对原始数据进行数字处理,另一系统使用模拟电路处理采集的信号。本文包括每种实现的详细说明,获得的结果以及与商用设备的性能比较。

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