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首页> 外文期刊>Soil Science Society of America Journal >Clarification and Calibration of Reflection Coefficient for Electrical Conductivity Measurement by Time Domain Reflectometry
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Clarification and Calibration of Reflection Coefficient for Electrical Conductivity Measurement by Time Domain Reflectometry

机译:时域反射法测量电导率的反射系数的澄清和校准

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摘要

Measurement of electrical conductivity by time domain reflectometry (TDR) requires knowledge of the source step voltage, which is often implicitly accounted for in the measured reflection coefficient. Errors may arise, however, from imperfect amplitude calibration when transforming the voltage signal into the reflection coefficient signal. This instrument error was identified as a considerable source of error in addition to cable resistance for TDR electrical conductivity measurements. The effect of the instrument error due to imperfect amplitude calibration was theoretically examined by the direct current circuit model and experimentally verified. The instrument error resulted in an overestimation of electrical conductivity while the cable resistance led to an underestimation. We clarified that the series resistors model for correction of cable resistance is accurate if the measured reflection coefficient is corrected for the instrument error. A calibration (correction) method for the measured reflection coefficient was proposed to account for both the instrument error and the effect of cable resistance, leading to a simple, accurate, and theoretically sound procedure for TDR electrical conductivity measurements.
机译:通过时域反射法(TDR)进行电导率的测量需要了解源级步进电压,这通常隐含在所测得的反射系数中。但是,当将电压信号转换为反射系数信号时,幅度校准不完善可能会引起误差。除了用于TDR电导率测量的电缆电阻外,该仪器错误还被认为是重要的错误来源。理论上通过直流电路模型检查了由于幅度校正不完善而引起的仪器误差的影响,并进行了实验验证。仪器误差导致电导率被高估,而电缆电阻导致被低估。我们明确指出,如果针对仪器误差校正了测得的反射系数,则用于校正电缆电阻的串联电阻器模型将是准确的。提出了一种用于测量反射系数的校准(校正)方法,以解决仪器误差和电缆电阻的影响,从而为TDR电导率测量提供了一种简单,准确且理论上合理的程序。

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