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首页> 外文期刊>IEEE sensors journal >Measuring Dielectric Properties for Sensing Foreign Material in Peanuts
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Measuring Dielectric Properties for Sensing Foreign Material in Peanuts

机译:测量介电特性以感测花生中的异物

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摘要

Free-space dielectric properties measurements at 10 GHz with four pairs of low-cost printed Yagi-Uda antennas are proposed for detecting foreign material in unshelled peanuts, including sticks, peanut shells, peanut raisins, and stones. The four-element array design of the Yagi-Uda antenna allowed better averaging over the entire sample volume and improved the measurement resolution. The antenna gain is about 9.7 dBi. The beam width of each antenna is about 18 degrees and 38 degrees for the E-plane and H-plane at 3 dB, respectively. The attenuation and phase shift were measured for each pair of antennas by controlling automatically the microwave switches. Measurement repeatability of the system was confirmed by using different thicknesses of polyethylene dielectric slab samples. The standard deviation was less than 0.5 dB for the attenuation and less than 5.0 degrees for phase measurements. Sensitivity of each antenna pair for unshelled peanuts and different foreign materials, each loaded in a small volume (4.4 cm x 4.4 cm x 12.1 cm), was tested by using a partitioned sample container. It was shown that a difference in attenuation was more than 1.5 dB for different types of foreign materials and also for unshelled peanut samples with a 1% moisture content difference. Prediction of moisture content in cleaned unshelled peanut samples agreed well with the standard oven-drying method (standard error of calibration = 0.51%). The dielectric properties of foreign materials mixed with cleaned unshelled peanut samples were measured through the attenuation and phase shift. The measurement repeatability of each antenna and all four pairs of antennas is presented.
机译:建议使用四对低成本印刷的Yagi-Uda天线在10 GHz下进行自由空间介电特性测量,以检测带壳花生中的异物,包括棒,花生壳,花生葡萄干和石头。 Yagi-Uda天线的四元素阵列设计允许对整个样本量进行更好的平均,并提高了测量分辨率。天线增益约为9.7 dBi。对于E平面和H平面,每个天线的波束宽度分别为3 dB时约18度和38度。通过自动控制微波开关,测量每对天线的衰减和相移。通过使用不同厚度的聚乙烯介电板样品,可以确认系统的测量重复性。衰减的标准偏差小于0.5 dB,相位测量的标准偏差小于5.0度。使用分隔的样品容器测试每个天线对对带壳花生和不同异物的敏感度,每个天线装成小体积(4.4 cm x 4.4 cm x 12.1 cm)。结果表明,对于不同类型的异物以及水分含量相差1%的带壳花生样品,衰减的差异均大于1.5 dB。清洁的带壳花生样品中的水分含量的预测与标准烘箱干燥方法非常吻合(校准的标准误差= 0.51%)。通过衰减和相移来测量与清洁的带壳花生样品混合的异物的介电性能。介绍了每个天线和所有四对天线的测量重复性。

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