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Mapping soil and pasture variability with an electromagnetic induction sensor.

机译:利用电磁感应传感器绘制土壤和牧场的变化情况。

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The general objective of this study was to test a non-contact electromagnetic induction probe to evaluate the soil and pasture variability in a precision agriculture project. Assessment of the variability of soil and vegetation in a permanent pasture is the basis for management of variable rate fertilization, which is the main instrument used by farmers for improvements in permanent pasture in Alentejo, Portugal. The traditional process of sampling and evaluation of the soil is very demanding in terms of time, labour and reagents, and can derail a project of precision agriculture. This paper describes the major steps followed by the authors to simplify the methodology of soil evaluation in a permanent pasture based on measuring the apparent soil electrical conductivity. Tests were carried out in a parcel of approximately 6 ha, which was subdivided into 28 m x 28 m squares. The soil samples and the evaluation of apparent electrical conductivity were geo-referenced with a global positioning system. The geospatial data were processed by ArcGIS software and the statistical analysis resulted in significant correlation coefficient values between apparent electrical conductivity and altitude, soil pH and pasture dry matter yield.
机译:这项研究的总体目标是测试一个非接触式电磁感应探针,以评估精准农业项目中土壤和牧场的变异性。评估永久牧场中土壤和植被的变异性是管理变量施肥的基础,这是农民在葡萄牙阿连特茹(Alentejo)改善永久牧场的主要手段。传统的土壤采样和评估过程在时间,劳动力和试剂方面要求很高,并且可能使精密农业项目脱轨。本文介绍了作者遵循的主要步骤,以基于测量的表观土壤电导率来简化永久性牧场中土壤评估的方法。测试是在大约6公顷的地块中进行的,细分为28 m x 28 m的正方形。使用全球定位系统对土壤样品和表观电导率进行地理参考。地理空间数据由ArcGIS软件处理,统计分析得出了表观电导率与海拔,土壤pH值和牧草干物质产量之间的显着相关系数值。

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