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Analysis of Soil Variability Measured with a Soil Strength Sensor

机译:用土壤强度传感器测量的土壤变异性分析

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摘要

In the context of precision agriculture, the knowledge of soil strength variability at the field scale may be useful for improving site-specific tillage. Moreover, rapid and accurate sensing methods for soil physical properties determination would favourably replace labour-intensive, time-consuming and expensive soil sampling and analysis. This study aims at validating conclusions of a previous study which was conducted to develop and test a soil strength sensor in field conditions. The coupled acquisition of the sensor's signals and the corresponding DGPS positions allowed establishment of maps for the three measured outputs, namely the horizontal force (F_x), the vertical force (F_z) and the moment (M_y). In order to study the relationships between measured forces and soil physical parameters, a series of soil properties were measured on soil cores collected in 10 reference plots. Significant correlations were found between F_x and the average resistance to cone penetration at 25 cm depth (r = 0.95) and between F_x and average soil moisture at 30 cm depth (r = -0.95). These relationships were similar to those found in the first study. This sensing method proved its capability to characterise within-field soil variability.
机译:在精准农业的背景下,田间规模的土壤强度变异性知识可能有助于改善特定地点的耕作方式。而且,用于土壤物理性质测定的快速和准确的传感方法将有利地代替劳动强度大,费时且昂贵的土壤采样和分析。这项研究旨在验证先前研究的结论,该研究是在田间条件下开发和测试土壤强度传感器的。传感器信号和相应的DGPS位置的耦合获取允许建立三个测得输出的地图,即水平力(F_x),垂直力(F_z)和力矩(M_y)。为了研究测得的力与土壤物理参数之间的关系,对在10个参考样地中收集的土壤核心进行了一系列土壤特性的测量。发现F_x与25厘米深度处的平均锥孔穿透阻力(r = 0.95)之间以及F_x与30 cm深度处的平均土壤湿度之间具有显着相关性(r = -0.95)。这些关系与第一个研究中发现的相似。这种感测方法证明了其能够表征田间土壤变异性的能力。

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