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Discrimination of common Mediterranean plant species using field spectroradiometry

机译:使用场光谱法区分常见的地中海植物物种

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Field spectroradiometry of land surface objects supports remote sensing analysis, facilitates the discrimination of vegetation species, and enhances the mapping efficiency. Especially in the Mediterranean, spectral discrimination of common vegetation types, such as phrygana and maquis species, remains a challenge. Both phrygana and maquis may be used as a direct indicator for grazing management, fire history and severity, and the state of the wider ecosystem equilibrium. This study aims to investigate the capability of field spectroradiometry supporting remote sensing analysis of the land cover of a characteristic Mediterranean area. Five common Mediterranean maquis and phrygana species were examined. Spectra acquisition was performed during an intensive field campaign deployed in spring 2010, supported by a novel platform MUFSPEM@MED (Mobile Unit for Field SPEctral Measurements at the MEDiterranean) for high canopy measurements. Parametric and non-parametric statistical tests have been applied to the continuum-removed reflectance of the species in the visible to shortwave infrared spectral range. Interpretation of the results indicated distinct discrimination between the studied species at specific spectral regions. Statistically significant wavelengths were principally found in both the visible and the near infrared regions of the electromagnetic spectrum. Spectral bands in the shortwave infrared demonstrated significant discrimination features for the examined species adapted to Mediterranean drought. All in all, results confirmed the prospect for a more accurate mapping of the species spatial distribution using remote sensing imagery coupled with in situ spectral information.
机译:地面物体的现场光谱辐射测定法支持遥感分析,有助于区分植被种类,并提高制图效率。尤其是在地中海地区,常见的植被类型(如phrygana和maquis物种)的光谱区分仍然是一个挑战。 phrygana和maquis均可作为放牧管理,火灾历史和严重程度以及更广泛的生态系统平衡状态的直接指标。这项研究的目的是调查现场光谱辐射测量技术支持对地中海特色地区的土地覆盖进行遥感分析的能力。检查了五个常见的地中海马奎斯族和phrygana种。光谱采集是在2010年春季部署的密集野外活动中进行的,由新型平台MUFSPEM @ MED(位于MEDiterranean的野外光谱测量移动单元)支持,用于高冠层测量。参数和非参数统计测试已应用于从可见光到短波红外光谱范围内该物种的连续去除的反射率。结果的解释表明,在特定光谱区域,所研究物种之间存在明显区别。具有统计学意义的波长主要在电磁光谱的可见光区域和近红外区域中找到。短波红外光谱带显示出对受地中海干旱适应的物种具有明显的区分特征。总而言之,结果证实了使用遥感影像与原位光谱信息相结合来更精确地映射物种空间分布的前景。

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