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首页> 外文期刊>Radioelectronics and Communications Systems >Remote Identification of Liquids in a Dielectric Container Using Millimeter Waves. 2. Linear Scanning1
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Remote Identification of Liquids in a Dielectric Container Using Millimeter Waves. 2. Linear Scanning1

机译:使用毫米波远程识别介电容器中的液体。 2.线性扫描1

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The results of experimental studies showing the applicability of short-range radar in the millimeter wavelength range for remote identification of explosive liquids in closed dielectric containers are presented. This study presents radiometric study of hazardous liquids based on an example of gasolines and diesel fuels. It has been shown experimentally that radiometric studies allow remote studies and object identification at distances of up to several meters. The variety of physical and chemical properties of liquid fuels does not allow their identification using the measurement results of only the permittivity and loss tangent from one measurement in one frequency range. The use of a thermal portrait of liquid fuels in closed dielectric containers for their identification is more illustrative and informative. The dependence of the spatial temperature portrait of the container with liquid on the polarization of the received signal is experimentally shown. The use of different polarizations of the received signal and the difference in the spatial temperature portraits of the liquid in the container provide additional information in order to increase the probability of correct identification of the liquid. Thermal portraits obtained with linear scanning for gasolines of different manufacturers differ more strongly, in comparison with thermal portraits of diesel fuels. Due to the modification of the measuring system, the total time for scanning and obtaining the output experimental data is 42 s. The standard deviation of the obtained experimental data did not exceed 3.6%.
机译:实验结果表明,毫米波范围内的短程雷达可用于远程识别密闭电介质容器中的爆炸性液体。这项研究以汽油和柴油为例,介绍了危险液体的辐射测量研究。实验表明,放射学研究可以在长达几米的距离内进行远程研究和物体识别。液体燃料的各种物理和化学特性不允许仅使用一个频率范围内一次测量的介电常数和损耗角正切的测量结果来识别。在密闭的电介质容器中使用液体燃料的热画像来进行识别是更加说明和有益的。实验上显示了带有液体的容器的空间温度肖像对所接收信号的极化的依赖性。所接收信号的不同极化的使用以及容器中液体的空间温度肖像的差异提供了附加信息,以便增加正确识别液体的可能性。与柴油燃料的热像相比,通过线性扫描不同制造商的汽油获得的热像差异更大。由于测量系统的修改,用于扫描和获取输出实验数据的总时间为42 s。所得实验数据的标准偏差不超过3.6%。

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