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Intercomparison of phenological transition dates derived from the PhenoCam Dataset V1.0 and MODIS satellite remote sensing

机译:从PhenoCam数据集V1.0和MODIS卫星遥感获得的物候转换日期的比对

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摘要

Phenology is a valuable diagnostic of ecosystem health, and has applications to environmental monitoring and management. Here, we conduct an intercomparison analysis using phenological transition dates derived from near-surface PhenoCam imagery and MODIS satellite remote sensing. We used approximately 600 site-years of data, from 128 camera sites covering a wide range of vegetation types and climate zones. During both “greenness rising” and “greenness falling” transition phases, we found generally good agreement between PhenoCam and MODIS transition dates for agricultural, deciduous forest, and grassland sites, provided that the vegetation in the camera field of view was representative of the broader landscape. The correlation between PhenoCam and MODIS transition dates was poor for evergreen forest sites. We discuss potential reasons (including sub-pixel spatial heterogeneity, flexibility of the transition date extraction method, vegetation index sensitivity in evergreen systems, and PhenoCam geolocation uncertainty) for varying agreement between time series of vegetation indices derived from PhenoCam and MODIS imagery. This analysis increases our confidence in the ability of satellite remote sensing to accurately characterize seasonal dynamics in a range of ecosystems, and provides a basis for interpreting those dynamics in the context of tangible phenological changes occurring on the ground.
机译:物候学是对生态系统健康的有价值的诊断,并已应用于环境监测和管理。在这里,我们使用从近地表PhenoCam影像和MODIS卫星遥感获得的物候转换日期进行比对分析。我们使用了128个摄像机站点中大约600个站点年的数据,这些站点涵盖了广泛的植被类型和气候带。在“绿色上升”和“绿色下降”两个过渡阶段中,我们发现农业,落叶林和草地场所的PhenoCam和MODIS过渡日期之间通常具有良好的一致性,前提是摄像机视野中的植被代表了更广阔的范围。景观。对于常绿森林而言,PhenoCam和MODIS转换日期之间的相关性很差。我们讨论了潜在的原因(包括亚像素空间异质性,过渡日期提取方法的灵活性,常绿系统中的植被指数敏感性以及PhenoCam地理位置不确定性),这些潜在原因导致了从PhenoCam和MODIS影像得出的植被指数的时间序列之间的差异。这种分析增加了我们对卫星遥感准确描述一系列生态系统中季节动态的能力的信心,并为在地面发生的明显物候变化的背景下解释这些动态提供了基础。

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