4.5 Article

Remote Sensing Methods for the Biophysical Characterization of Protected Areas Globally: Challenges and Opportunities

出版社

MDPI
DOI: 10.3390/ijgi10060384

关键词

protected areas; remote sensing; biophysical characterization

资金

  1. European Commission Expert Contract [CT-EX2020D381533-101]
  2. Joint Research Centre of the European Commission
  3. Biodiversity and Protected Areas Management (BIOPAMA) EU-ACP programme, an initiative of the African, Caribbean and Pacific (ACP) Group of States - 10th and 11th European Development Funds of the European Union (EU)

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This study reviews methods for the biophysical characterization of terrestrial protected areas (PAs) at a global scale by means of remote sensing and provides recommendations to improve existing initiatives, emphasizing the importance of considering structural and functional attributes, integrating a broad spectrum of variables, and utilizing cloud-based platforms for large-scale characterization.
Protected areas (PAs) are a key strategy to reverse global biodiversity declines, but they are under increasing pressure from anthropogenic activities and concomitant effects. Thus, the heterogeneous landscapes within PAs, containing a number of different habitats and ecosystem types, are in various degrees of disturbance. Characterizing habitats and ecosystems within the global protected area network requires large-scale monitoring over long time scales. This study reviews methods for the biophysical characterization of terrestrial PAs at a global scale by means of remote sensing (RS) and provides further recommendations. To this end, we first discuss the importance of taking into account the structural and functional attributes, as well as integrating a broad spectrum of variables, to account for the different ecosystem and habitat types within PAs, considering examples at local and regional scales. We then discuss potential variables, challenges and limitations of existing global environmental stratifications, as well as the biophysical characterization of PAs, and finally offer some recommendations. Computational and interoperability issues are also discussed, as well as the potential of cloud-based platforms linked to earth observations to support large-scale characterization of PAs. Using RS to characterize PAs globally is a crucial approach to help ensure sustainable development, but it requires further work before such studies are able to inform large-scale conservation actions. This study proposes 14 recommendations in order to improve existing initiatives to biophysically characterize PAs at a global scale.

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