Nature reserve optimization with buffer zones and wildlife corridors for rare species

Valentin Hamaide , Bertrand Hamaide , Justin C. Williams
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引用次数: 3

Abstract

The creation of protected areas is an important public policy strategy for protecting species, as mentioned in the Aichi targets. This paper formulates spatial integer programming (set covering) models to protect both rare species (arbitrarily defined here as species breeding in 1% or less of the territory) and common species. Spatial constraints are used to form buffer zones around core areas that protect rare species, and cost-efficient corridors linking these buffered cores are then designed. The models are applied on a portion of the State of Oregon and results are evaluated in light of the expected United Nations post-2020 targets for area-based conservation measures. It is estimated that such results aimed at covering all species and enhancing protection of at-risk species seem locally consistent with the global biodiversity objectives for 2030.

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自然保护区优化,建立珍稀物种缓冲区和野生动物走廊
正如爱知目标中提到的那样,建立保护区是保护物种的一项重要公共政策战略。本文建立了空间整数规划(集合覆盖)模型来保护稀有物种(这里任意定义为在1%或更少的领土内繁殖的物种)和常见物种。利用空间限制在核心区域周围形成缓冲区,以保护稀有物种,然后设计连接这些缓冲核心的经济高效走廊。这些模型应用于俄勒冈州的一部分地区,并根据联合国2020年后基于区域的保护措施的预期目标对结果进行评估。据估计,这种旨在覆盖所有物种和加强濒危物种保护的结果在当地似乎与2030年的全球生物多样性目标一致。
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