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PERFORMANCE ANALYSIS OF CAPACITANCE AND ELECTRICAL RESISTANCE-TYPE SOIL MOISTURE SENSORS IN A SILT LOAM SOIL

机译:土壤土中电容和电阻型土壤水分传感器的性能分析

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The performance of the Irrometer 200SS Watermark granular matrix sensor (WM), John Deere Field Connect (JD-v2) probe, and Delta-T PR1-capacitance (PR1-C) probe were evaluated against a Troxler 4302 neutron gauge (NG) for in-season field volumetric water content (theta(v)) measurements at two soil depths in a Hastings silt loam soil at the University of Nebraska-Lincoln/Institute of Agriculture and Natural Resources South Central Agricultural Laboratory (SCAL) near Clay Center, Nebraska. The performances of the sensors were investigated over three years (2011-2013) under various water, nutrient, and crop management practices. The WM sensors performed best when using a field-calibrated soil water retention curve (SWRC) [root mean square difference (RMSD) = 0.024 m(3) m(-3)] as compared to a SWRC developed from a pedotransfer function (RMSD = 0.070 m(3) m(-3)). The WM sensors using a previously developed SWRC for the experimental field resulted in RMSD values less than 0.05 m(3) m(-3) when compared to the NG-measured theta(v) at all depths and years. The JD-v2 probes underestimated theta(v) in the dry range and overestimated theta(v) in the wet range, which resulted in regression slopes and intercepts for the 0.30 and 1.0 m soil depths that were significantly different from unity (i.e., 1.0) and zero (p(0.05) 0.05), respectively. However, the performance of the JD-v2 probes improved in 2013 from RMSD values of 0.066, 0.068, and 0.067 m(3) m(-3) when using the manufacturer's calibration to 0.043, 0.033, and 0.038 m(3) m(-3) for the 0.30, 1.0 m, and pooled soil depths, respectively, after calibrating the JD-v2 probes using the 2012 regression responses. The PR1-C probe-estimated theta(v) regression coefficients were also significantly different from unity and zero (p(0.05) 0.05), respectively, and the resulting RMSD values ranged from 0.077 to 1.133 m(3) m(-3). In general, the WM and JD-v2 sensors followed the NG total water (TW) trends at all irrigation levels; however, the PR1-C probe was inconsistent and at times estimated unrealistic TW amounts. While there are limitations and concerns for each sensor technology, the results suggest that the WM and JD-v2 sensors can be used to monitor soil moisture to enhance irrigation management following field calibrations. Furthermore, development of soil-specific field calibration curves for individual soil depths is strongly recommended to enhance the performance of each sensor type and improve the accuracy of in-season field. v measurements.
机译:针对Troxler 4302中子规(NG)对Irrometer 200SS水印颗粒矩阵传感器(WM),John Deere Field Connect(JD-v2)探针和Delta-T PR1电容(PR1-C)探针的性能进行了评估内布拉斯加州大学林肯分校/内布拉斯加州克莱中心附近的农业和自然资源南部中央农业实验室(SCAL)在黑斯廷斯粉质壤土上两个土壤深度的季节田间体积水含量(theta(v))测量。在各种水,养分和作物管理实践下,对传感器的性能进行了三年(2011-2013年)的调查。与使用从脚踏传递函数(RMSD)开发的SWRC相比,使用现场校准的土壤保水曲线(SWRC)[均方根差(RMSD)= 0.024 m(3)m(-3)]时,WM传感器的性能最佳。 = 0.070 m(3)m(-3))。与在所有深度和年份都用NG测量的theta(v)相比,使用先前开发的SWRC进行实验场的WM传感器导致RMSD值小于0.05 m(3)m(-3)。 JD-v2探头在干燥范围内低估了theta(v),在潮湿范围内高估了theta(v),这导致0.30和1.0 m土层深度的回归斜率和截距明显不同于统一性(即1.0)。 )和零(p(0.05)<0.05)。但是,2013年JD-v2探头的性能从0.066、0.068和0.067 m(3)m(-3)的RMSD值提高到了0.043、0.033和0.038 m(3)m( -3)在使用2012年回归响应校准JD-v2探针后,分别针对0.30、1.0 m和合并的土壤深度。 PR1-C探针估计的theta(v)回归系数也分别显着不同于统一和零(p(0.05)<0.05),并且所得RMSD值范围为0.077至1.133 m(3)m(-3) )。通常,WM和JD-v2传感器在所有灌溉水平下都遵循NG总水(TW)趋势;但是,PR1-C探针不一致,有时估计不现实的TW量。尽管每种传感器技术都有局限性和担忧,但结果表明WM和JD-v2传感器可用于监测土壤湿度,以在田间校准后增强灌溉管理。此外,强烈建议针对各个土壤深度开发特定于土壤的田间校准曲线,以增强每种传感器类型的性能并提高季节内田间的准确性。 v测量。

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