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Comparison of calibration techniques of an impedance probe for near-surface soil moisture measurement

机译:用于近地表土壤水分测量的阻抗探头校准技术的比较

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Abstract: An Impedance Probe (IP) was used during the Southern Great Plain 1997 field experiment to support the remote sensing soil moisture mapping effort in Oklahoma, USA. Soil moisture sampling techniques used as ground-truth for remote sensing are most often not adequate due to the time and cost associated with them. The need for fast, accurate, less expensive, and less destructive measurement techniques within the remote sensing discipline is increasingly growing. The IP offers an alternative for measuring soil moisture in remotely- sensed regions where the logistics of gravimetric sampling can restrict the number of samples obtained. The gravimetric technique has been the traditional and most accurate technique used to validate remotely measured soil moisture. This technique is very destructive and time consuming, thereby limiting our ability to apply it over large areas expected by coarse resolution microwave remote sensing products. Recent advances in the Time Domain Reflectometery (TDR) techniques have resulted in sensors with less noise and require minimum human intervention. Field sampling and laboratory experiments were conducted to evaluate and calibrate soil moisture data measured using an IP. The objectives were: to examine the best calibration technique that can be used to estimate the spatial distribution of soil moisture and/or a representative mean moisture level for a given location, and to evaluate the correlation of soil moisture values using the probe and gravimetric measurement techniques. Results indicated that a site specific calibration curve developed by using a pressure plate apparatus provided a representative mean value was equivalent to the gravimetric technique. Both, the simulated and manufacturer calibration techniques provide soil moisture values that are spatially correlated with the gravimetric measurement technique. Our results indicated that, the instrument can provide reproducible results comparable to the gravimetric technique. This instrument can be utilized to meet the requirement of measuring the soil moisture content in the upper 6-cm of the soil depth. !12
机译:摘要:在美国大平原地区1997年的野外试验中,使用了一个阻抗探针(IP)来支持美国俄克拉荷马州的遥感土壤湿度测绘工作。由于与之相关的时间和成本,用作遥感地面真相的土壤水分采样技术通常是不足够的。遥感学科对快速,准确,便宜,破坏性较小的测量技术的需求日益增长。 IP提供了一种在偏远地区测量土壤水分的替代方法,在这些地区,重量采样的后勤工作可能会限制获得的样品数量。重量分析技术是用于验证远程测量的土壤水分的传统且最准确的技术。该技术非常具有破坏性且耗时,因此限制了我们将其应用到粗分辨率微波遥感产品所期望的大区域上的能力。时域反射仪(TDR)技术的最新进展已使传感器具有更低的噪声并且需要最少的人工干预。进行了现场采样和实验室实验,以评估和校准使用IP测量的土壤水分数据。目的是:研究最佳校准技术,该技术可用于估计给定位置的土壤水分的空间分布和/或代表性平均水分水平,并使用探针和重量分析法评估土壤水分值的相关性技术。结果表明,通过使用压板设备提供的代表平均值得出的特定于现场的校准曲线等同于重量分析技术。模拟的和制造商的校准技术都提供了与水分测量技术在空间上相关的土壤水分值。我们的结果表明,该仪器可提供与重量技术相当的可重复结果。该仪器可用于满足在土壤深度上部6厘米处测量土壤水分含量的要求。 !12

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