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INVERSION OF FARMLAND SOIL MOISTURE IN LARGE REGION BASED ON MODIFIED VEGETATION INDEX

机译:基于修正的植被指数的大面积农田土壤水分反演

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Soil moisture is an important parameter for agricultural production. Efficient and accurate monitoring of soil moisture is an important link to ensure the safety of agricultural production. Remote sensing technology has been widely used in agricultural moisture monitoring because of its timeliness, cyclicality, dynamic tracking of changes in things, easy access to data, and extensive monitoring. Vegetation index and surface temperature are important parameters for moisture monitoring. Based on NDVI, this paper introduces land surface temperature and average temperature for optimization. This article takes the soil moisture in winter wheat growing area in Henan Province as the research object, dividing Henan Province into three main regions producing winter wheat and dividing the growth period of winter wheat into the early, middle and late stages on the basis of phenological characteristics and regional characteristics. Introducing appropriate correction factor during the corresponding growth period of winter wheat, correcting the vegetation index in the corresponding area, this paper establishes regression models of soil moisture on NDVI and soil moisture on modified NDVI based on correlation analysis and compare models. It shows that modified NDVI is more suitable as a indicator of soil moisture because of the better correlation between soil moisture and modified NDVI and the higher prediction accuracy of the regression model of soil moisture on modified NDVI. The research in this paper has certain reference value for winter wheat farmland management and decision-making.
机译:土壤水分是农业生产的重要参数。高效,准确地监测土壤水分是确保农业生产安全的重要环节。遥感技术因其及时性,周期性,对事物变化的动态跟踪,易于获取的数据以及广泛的监测而被广泛用于农业水分监测。植被指数和表面温度是水分监测的重要参数。基于NDVI,本文介绍了地表温度和平均温度以进行优化。本文以河南省冬小麦种植区土壤水分为研究对象,将河南省划分为三个主要产冬小麦地区,并根据物候学将冬小麦生育期分为早,中,后期特征和区域特征。在冬小麦生育期引入适当的校正因子,校正相应地区的植被指数,通过相关分析和比较模型,建立了NDVI土壤水分和改良NDVI土壤水分的回归模型。结果表明,改良的NDVI更适合作为土壤水分的指标,因为土壤水分与改良的NDVI之间具有更好的相关性,而且改良的NDVI对土壤水分的回归模型的预测准确性更高。本文的研究对冬小麦耕地管理与决策具有一定的参考价值。

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