Calibration of Capacitance Probe Sensors using Electric Circuit Theory

Calibration of Capacitance Probe Sensors using Electric Circuit Theory
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DOI:
10.2136/sssaj2004.4300
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发表时间:
2004-03
影响因子:
2.9
通讯作者:
T. Kelleners;R. Soppe;D. Robinson;M. Schaap;J. Ayars;T. Skaggs
T. Kelleners;R. Soppe;D. Robinson;M. Schaap;J. Ayars;T. Skaggs
中科院分区:
农林科学3区
文献类型:
--
作者:
T. Kelleners;R. Soppe;D. Robinson;M. Schaap;J. Ayars;T. Skaggs

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电容探头传感器是一种用于估计土壤含水量的有吸引力的电磁技术。然而,人们担心土壤盐度和土壤温度对传感器的影响。我们提出了一种电路模型,它将传感器频率与介质的介电常数联系起来,并且能够校正由于离子电导率和弛豫引起的介电损耗。使用修改后的设置中的传感器读数来优化电路电感 L,其中陶瓷电容器取代了传感器的电容板。模型中的其他三个参数使用一系列具有不同介电常数的非导电介质中的传感器读数进行优化。塑料接入管 gp 的几何系数高于介质 gm 的几何系数,表明大部分电磁场不会超出接入管。通过在三种介质中混合盐来评估离子电导率对传感器读数的影响。影响是深远的。传感器频率随着电导率的增加而降低。对于介电常数最低的介质,这种影响最为明显。该电路模型能够校正传感器上的电导率影响。然而,随着介电损耗的增加,频率对介电常数变得相对不敏感,并且测量频率或传感器常数的微小误差会导致计算的介电常数出现较大误差。通过固定其中两个常数并使用空气和水中的传感器读数计算另外两个常数,可以简化电容传感器的校准。
Capacitance probe sensors are an attractive electromagnetic technique for estimating soil water content. There is concern, however, about the influence of soil salinity and soil temperature on the sensors. We present an electric circuit model that relates the sensor frequency to the permittivity of the medium and that is able to correct for dielectric losses due to ionic conductivity and relaxation. The circuit inductance L is optimized using sensor readings in a modified setup where ceramic capacitors replace the sensor's capacitance plates. The three other parameters in the model are optimized using sensor readings in a range of nonconductive media with different permittivities. The geometric factor for the plastic access tube gp is higher than the geometric factor for the medium gm, indicating that most of the electromagnetic field does not go beyond the access tube. The effect of ionic conductivity on the sensor readings is assessed by mixing salts in three of the media. The influence is profound. The sensor frequency decreases with increasing conductivity. The effect is most pronounced for the medium with the lowest permittivity. The circuit model is able to correct for the conductivity effect on the sensors. However, as the dielectric losses increase, the frequency becomes relatively insensitive to permittivity and small inaccuracies in the measured frequency or in the sensor constants result in large errors in the calculated permittivity. Calibration of the capacitance sensors can be simplified by fixing two of the constants and calculating the other two using sensor readings in air and water.