精准农业
遥感
环境科学
系统工程
计算机科学
时间分辨率
农业
航空航天工程
工程类
物理
生态学
光学
地质学
生物
作者
Juliane Bendig,C. Y. Chang,Na Wang,Jon Atherton,Zbyněk Malenovský,Uwe Rascher
标识
DOI:10.1109/igarss47720.2021.9555157
摘要
Demand for high spatial and temporal resolution measurements has triggered a rapid development of unmanned aircraft systems (UAS) for plant phenotyping and precision farming purposes. Similarly, recent progress in low-altitude remote sensing of solar-induced chlorophyll fluorescence (SIF) resulted in several studies aiming at the development of SIF proximal sensing approaches. Although first experimental results are promising, the requirements for reliable and repeatable measurements in agricultural experiments still constrain applicability of these platforms. In this study, we analyze current capabilities and potentials of SIF measuring UAS for operational use. We highlight existing challenges and outline how UAS SIF sensing could be used more frequently and reliably in precision agriculture applications in the near future.
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