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Effective Calibration of Low-Cost Soil Water Content Sensors

机译:低成本土壤水分传感器的有效校准

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摘要

Soil water content is a key variable for understanding and modelling ecohydrological processes. Low-cost electromagnetic sensors are increasingly being used to characterize the spatio-temporal dynamics of soil water content, despite the reduced accuracy of such sensors as compared to reference electromagnetic soil water content sensing methods such as time domain reflectometry. Here, we present an effective calibration method to improve the measurement accuracy of low-cost soil water content sensors taking the recently developed SMT100 sensor (Truebner GmbH, Neustadt, Germany) as an example. We calibrated the sensor output of more than 700 SMT100 sensors to permittivity using a standard procedure based on five reference media with a known apparent dielectric permittivity (1 < Ka < 34.8). Our results showed that a sensor-specific calibration improved the accuracy of the calibration compared to single “universal” calibration. The associated additional effort in calibrating each sensor individually is relaxed by a dedicated calibration setup that enables the calibration of large numbers of sensors in limited time while minimizing errors in the calibration process.
机译:土壤水分是理解和模拟生态水文过程的关键变量。尽管与参考电磁土壤水分感测方法(例如时域反射法)相比,这种传感器的精度有所降低,但低成本电磁传感器正越来越多地用于表征土壤水分的时空动态。在这里,我们以最近开发的SMT100传感器(德国Neustadt的Trubbner GmbH)为例,提出一种有效的校准方法来提高低成本土壤水分传感器的测量精度。我们使用基于五种已知介电常数(1

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