生物多样性-一项新的太空任务,以监测地球生态系统的精细尺度

X. Briottet
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引用次数: 3

摘要

成像光谱学在表征植被、自然和农业土壤以及人造表面的生化、生物物理和结构特性方面表现出了它的兴趣。在Hyperion任务之后,新的太空任务已经出现(PRISMA, EnMap),或者正在研究(CHIME, SBG)。然而,它们的主要限制之一在于它们的空间分辨率,这导致了大量的混合像素,降低了它们对非常异质区域的识别潜力。生物多样性任务旨在通过更好的GSD采集(通常为8-10米)来补充这些空间任务,并对具有确定和定位良好特征的目标参考地点进行为期5天的重访。因此,它将特别有可能回答设计该仪器的两个科学问题。第一个问题涉及物种组合中植被特征的时空分布;这些特征与陆地生态系统的复原力、人为影响以及物种组成和组合方面的生态系统生物多样性有关。第二个问题涉及提高我们在生物多样性、水质和水深测量方面对沿海地区和内陆水域的认识,以便评估人类活动对其生态系统的影响。每个应用程序都提出了这样一个任务的科学挑战和用户需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BIODIVERSITY – A new space mission to monitor Earth ecosystems at fine scale
Imaging spectroscopy has demonstrated its interest in characterizing the biochemical, biophysical and structural properties of vegetation, natural and agricultural soils, as well as artificial surfaces. Following the Hyperion mission, new space missions have emerged (PRISMA, EnMap), or are under study (CHIME, SBG). However, one of their main limitations lies in their spatial resolution that induces a large number of mixed pixels reducing their potential for discrimination for very heterogeneous areas. The BIODIVERSITY mission aims to complement these space missions with better GSD acquisitions (typically 8-10 m) with a 5-day revisit on targeted reference sites with identified and well-located characteristics. It will thus make it possible, in particular, to answer two scientific issues that will design the instrument. The first issue concerns the spatial and temporal distribution of vegetation traits in species assemblages; these traits are associated with the resilience of terrestrial ecosystems, anthropogenic influences, and the biodiversity of ecosystems in terms of species composition and assemblages. The second issue relates to improving our knowledge of coastal areas and inland waters in terms of biodiversity, water quality and bathymetry, in order to assess the impact of human activity on their ecosytems. The scientific challenges as well as the user requirements for such a mission are presented for each application.
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