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A New Calibration Technique for Microwave Moisture Sensors

机译:微波湿度传感器的一种新型校准技术

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A new calibration technique was developed for implementation in microwave moisture sensors. The calibration permittivity function used for this purpose allows computation of moisture content in granular materials with significant differences in shape, dimensions and composition independent of bulk density and with temperature compensation. A three-dimensional representation is used to plot the calibration permittivity function as it depends on temperature and moisture content in wheat and corn. For each material, data points form a surface that is a plane. These planes have nearly the same coefficients which can be utilized for the development of a "universal" calibration method for moisture sensing in natural and manufactured granular materials. Foundations of the method are discussed, based on results obtained for wheat and corn over a wide temperature range and at moisture contents of practical interest.
机译:开发了一种新的校准技术,用于在微波湿度传感器中实现。用于此目的的校准介电常数允许计算颗粒材料中的水分含量,其形状,尺寸和组合物的形状,尺寸和组合物无关,与散装密度和温度补偿无关。三维表示用于绘制校准介电常数,因为它取决于小麦和玉米中的温度和水分含量。对于每个材料,数据点形成为平面的表面。这些平面具有几乎相同的系数,其可用于开发用于自然和制造的颗粒材料中的用于湿气感测的“通用”校准方法。讨论了该方法的基础,基于在宽温度范围内的小麦和玉米和实际兴趣的水分含量获得的结果。

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