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Developing an Interference-Free Non-Destructive Microwave Testing System for Liquid Samples

机译:为液体样品开发无干扰的非破坏性微波检测系统

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Non-destructive testing (i.e., NDT) techniques are exploited in various fields to detect internal properties of materials. In this work, an interference-free scheme for NDT microwave system is proposed. A testing-bed using off-the-shelf equipment has been implemented. The microwave radiation pattern is optimized to overlap with the middling sample between the transmitter and the receiver. The received power is then measured to characterize different samples. A software is developed using MATLAB to handle the acquisition, processing, and analysis of the received power data. A pure water sample is utilized as a standard sample. The system is, then, designed to eliminate the environment interference by performing an initial testing for the standard sample, prior any actual measurement, and process the two reads by the developed software. First, testing experiments are conducted using a single microwave frequency for different samples and a data-base for material classifications is created. A fixed RF frequency of 2650 MHz is used. Second, the testing experiments were conducted over the 1700 MHz to 2600 MHz microwave frequency range to evaluate liquid samples with controlled/contaminated properties. These include gasoline with different octane number samples and mixtures of milk and water samples. It is shown that the properties of the controlled (or contaminated) under-test sample can be successfully detected by calculating the average of the received power with respect to the measurement frequency range. The developed system is interference-free, made of off-the-shelf equipment, and is compatible with any personal computer or smart display.
机译:在各种领域中利用非破坏性测试(即,NDT)技术以检测材料的内部特性。在这项工作中,提出了对NDT微波系统的无干扰方案。已经实施了使用现成设备的测试床。微波辐射图案经过优化以与发射器和接收器之间的中间样品重叠。然后测量接收的功率以表征不同的样本。使用MATLAB开发一种软​​件来处理所接收的电源数据的采集,处理和分析。纯水样品用作标准样品。然后,系统是通过对标准样本的初始测试进行初始测试来消除环境干扰,以前任何实际测量,并由开发的软件处理两个读取。首先,使用单个微波频率进行测试实验,用于不同的样本,并创建用于材料分类的数据库。使用固定的RF频率为2650MHz。其次,在1700MHz至2600MHz微波频率范围内进行测试实验,以评估具有受控/受污染性质的液体样品。这些包括汽油,具有不同的辛烷值样品和牛奶和水样的混合物。结果表明,通过计算相对于测量频率范围的接收功率的平均值,可以成功地检测受控(或污染的)欠测试样品的性质。开发系统无干扰,由现成的设备制成,并与任何个人计算机或智能显示器兼容。

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