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Accurate Determination of the Bulk Electrical Conductivity with the TDR100 Cable Tester

机译:使用TDR100电缆测试仪准确测定体积电导率

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Time domain reflectometry (TDR) is commonly used to determine the soil bulk electrical conductivity. To obtain accurate measurements, the three parameters of a series resistor model (probe constant, Kp; cable resistance, Rc; and remaining resistance, R0) are typically calibrated using liquids with known electrical conductivity. Several studies have reported discrepancies between calibrated and directly measured parameters of the series resistor model. In this study, we examined the possibility that a technical issue with the TDR100 cable tester contributed to part of these inconsistencies. Our results showed that with an increasing level of waveform averaging, the reflection coefficient, as well as Kp, RC, and R0, approached a maximum value. A comparison with independently determined values indicated that a high level of waveform averaging provided the physically most plausible results. Based on our results, we propose averaging at least 16 waveforms, each consisting of at least 250 points. An oscilloscope-based signal analysis showed that the increase in the reflection coefficient with increasing waveform averaging in saline media is related to a capacitance associated with electrode polarization in combination with a change in the pulse period of the pulse train when the TDR100 starts collecting data points. This capacitance resulted in a slow change of the average voltage in the TDR pulse train until a stable average voltage was reached. Higher levels of waveform averaging cancel the impact of the first erroneous voltage measurements out. In practical applications, the errors in the determination of the bulk electrical conductivity can be as high as 5% for the low-conductivity range (<0.1 S m1) and up to 370% in saline media (1.4 S m1) when waveform averaging is changed after calibration.
机译:时域反射法(TDR)通常用于确定土壤的整体电导率。为了获得准确的测量结果,通常使用具有已知电导率的液体来校准串联电阻器模型的三个参数(探针常数Kp;电缆电阻Rc;剩余电阻R0)。几项研究报告了串联电阻模型的校准参数和直接测量参数之间的差异。在这项研究中,我们检查了TDR100电缆测试仪的技术问题是否会导致部分这种不一致的可能性。我们的结果表明,随着波形平均水平的提高,反射系数以及Kp,RC和R0接近最大值。与独立确定的值的比较表明,高水平的波形平均提供了物理上最合理的结果。根据我们的结果,我们建议平均至少16个波形,每个波形至少包含250个点。基于示波器的信号分析表明,在盐介质中,平均波形的反射系数随反射系数的增加而增加,这与与电极极化相关的电容以及TDR100开始收集数据点时脉冲序列的脉冲周期的变化有关。 。该电容导致TDR脉冲序列中平均电压的缓慢变化,直到达到稳定的平均电压为止。更高水平的波形平均可以抵消第一次错误电压测量的影响。在实际应用中,对于低电导率范围(<0.1 S m1),在测定总体电导率时的误差可能高达5%,而在盐介质中(1.4 S m1),高达370%的误差会发生。校准后更改。

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