基于相关法改进金属涡流识别

IF 0.2 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE Radio Electronics Computer Science Control Pub Date : 2022-12-03 DOI:10.15588/1607-3274-2022-4-1
А. О. Abramovych
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引用次数: 1

摘要

上下文。本文讨论了在相关法的基础上对涡流金属识别装置进行改进的问题。这种方法便于积累已知先导材料的数据库,也便于将未知金属物体的信号与数据库中的可用标准进行比较。所提出的方法可以在不损坏样品表面的情况下确定制成样品的金属类型。目标。这项工作的目的是根据涡流转换器的反馈信号按类型识别金属,由于识别新的信息特征和创建金属图像数据库。方法。本文介绍了一项实验研究的结果,该方法提高了使用涡流装置检测金属物体的识别可靠性。这些研究是在一个无线电系统的基础上进行的,该系统工作在涡流原理上,具有低频磁环天线。与x射线荧光、光学发射或化学方法相比,涡流法可以远程识别金属类型,而不会损坏其表面。提出了一种处理隐藏金属物体响应信号频谱的相关方法。在基于傅里叶变换的光谱区域处理信号时,相关方法可以提高按类型识别金属的可靠性。对具有相似光谱特征的金属(银、金、铅)的例子进行了研究。更新后的方法可以将信号响应信息参数之间的百分比差异从银和金的1.87%增加到5.02%,从银和铅的2.24%增加到4.34%,从金和铅的0.36%增加到0.7%。结果。所开发的无线电系统是一个实验室模型,由模拟部分和数字部分组成。模拟部分是一个天线单元、一个信号放大器和一个带通滤波器,数字部分是一个带有ADC的微控制器,用于将数据数字化并传输到笔记本电脑,该软件实现了所提出的信号处理方法。本文通过实验证实了利用无线电工程系统解决非磁性和磁性材料子集内金属识别问题的可能性。结论。现代涡流装置的发展是为了提高隐藏金属物体识别的可靠性,这与地球物理勘探、考古和执法机构寻找隐藏有色金属有关。该系统的开发和改进包括硬件的开发和从金属反馈信号中发现新的信息参数。其中一个方向可能是光谱区域信号处理的相关方法。
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IMPROVING THE EDDY CURRENT IDENTIFIER OF METALS BASED ON THE CORRELATION APPROACH
Context. The article considers the problem of improving the eddy current device for metal identification on the basis of the correlation approach. This approach is convenient for the accumulation of a database of known leading materials, as well as for the comparison of the signal from an unknown metal object with the available standards in the database. The proposed approach allows to determine the type of metal from which the sample is made, without damaging its surface. Objective. The aim of the work is the identification of metals by type on the feedback signals from the eddy current converter, due to the identification of new informative features and the creation of a database of images of metals. Method. The paper presents the results of an experimental study of the proposed approach to increase the reliability of identification of metal objects that are detected using an eddy current device. These studies are conducted on the basis of a radio system that operates on the eddy current principle and has low-frequency magnetic loop antennas. The eddy current method allows the identification of metals by type remotely and without damaging their surface, in contrast to X-ray fluorescence, optical emission or chemical methods. A correlation approach for processing the response signal spectrum from a hidden metal object is proposed. The correlation approach allows to increase the reliability of the identification of metals by type when processing the signal in the spectral region based on the Fourier transform. Studies have been conducted on the example of metals that have similar spectral characteristics (silver, gold, lead). The updated approach allowed to increase the percentage difference between the information parameters of signals – responses from 1.87% to 5.02% for silver and gold, from 2.24% to 4.34% for silver and lead and from 0.36% to 0.7% for gold and lead. Results. The developed radio system is a laboratory model, which consists of an analog part and a digital one. The analog part is an antenna unit, a signal amplifier and a bandpass filter, a digital part – a microcontroller with an ADC for digitizing and transmitting data to a laptop, which software implements the proposed approaches to signal processing. The paper experimentally confirmed the possibility of using a radio engineering system to solve the problem of metal identification within a subset of nonmagnetic and magnetic materials. Conclusions. The development of modern eddy current devices is aimed at increasing the reliability of the identification the hidden metal objects, which is relevant in geophysical exploration, archeology, and law enforcement agencies in the search for hidden non-ferrous metals. The development and improvement of such systems includes both the development the hardware and the discovery new information parameters in the feedback signals from metals. One such direction may be the correlation approach to signal processing in the spectral region.
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来源期刊
Radio Electronics Computer Science Control
Radio Electronics Computer Science Control COMPUTER SCIENCE, HARDWARE & ARCHITECTURE-
自引率
20.00%
发文量
66
审稿时长
12 weeks
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