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Mapping water status based on aerial thermal imagery: comparison of methodologies for upscaling from a single leaf to commercial fields

机译:基于空中图像的映射水位:从单叶到商业领域的升高方法的比较

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Aerial thermal remote sensing can provide a means for collecting spatial plant water status data. Many studies have shown their potential in irrigation management but the adaptation of this technology is not straight forward. In this paper, knowledge accumulated in recent years on thermal imagery analysis methodology for water status mapping is summarized aiming at indicating alternatives to calculate the Crop Water Stress Index (CWSI) for commercial scale water status mapping. Based on literature overview, four forms of wet-baselines to calculate CWSI were selected, namely: artificial wet reference surface, two theoretical calculations and a statistical bio-indicator. These baselines were used to calculate CWSI based on multi-temporal aerial thermal images of cotton fields. CWSI based on a statistical bio-indicator and one of the theoretical wet-baselines provided the best correlations. It is argued though that the statistical one is preferable since it includes the plant characteristics and it is farmer-friendly. Based on bio-indicators, leaf water potential maps of three commercial fields were produced on several dates through the season. Water status spatial patterns were not static and the effect of static factors like sandy soil patches also changed through the season. The maps show the importance of in-season variability mapping for rational irrigation management. To improve current variable-rate irrigation, the concept of in-season irrigation management zones (IMZ) based on thermal-images should be considered and integrated with the delineation of static irrigation IMZ.
机译:空中热遥感可以提供收集空间植物水状态数据的手段。许多研究表明他们在灌溉管理中的潜力,但这种技术的适应性不是直截了当的。在本文中,近年来累积的知识在热图像分析方法中,旨在指示用于计算商业规模水状态映射的作物水分应激指数(CWSI)的替代方案。基于文献概述,选择了四种形式的湿基线来计算CWSI,即:人工湿参考表面,两个理论计算和统计生物指示器。这些基准用于基于棉田的多时间空中散热图像计算CWSI。基于统计生物指示器的CWSI和理论湿基线之一提供了最佳相关性。虽然统计学是统计的,但由于它包括植物特征,并且它是农民友好的。基于生物指标,三个商业领域的叶水潜在地图是在季节的几个日期中产生的。水状态空间模式不是静态的,静态因素等静物斑块的效果也通过本赛季变化。地图显示了季节变异绘图对合理灌溉管理的重要性。为了提高电流的可变速率灌溉,应考虑基于热图像的季节灌溉管理区(IMZ)的概念,并与静态灌溉IMZ的描绘集成。

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