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Enhanced analysis of landscape structure: Inclusion of transition zones and small-scale landscape elements

机译:增强景观结构分析:包括过渡区和小规模景观元素

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摘要

Landscape diversity is an essential component of biodiversity because it determines the diversity of habitats and species. It is necessary to adopt an adaptive and realizable landscape structure monitoring model for ecosystem management. However, the existing methods of landscape structure analysis often do not consider the transitions between different types of patch, which are dynamic and play several functional roles in landscape structure. Another component of information that has often been ignored is "small-scale landscape elements" inside patches, which leads to within-patch heterogeneity being underestimated. This paper presents a method for solving these problems by regular landscape monitoring using RapidEye remote sensing data. We incorporate the third altitude dimension in landscape structure analysis, especially for detecting certain small-scale landscape structures such as groves, tree rows, and transitions at forest boundaries. For these detailed structures a number of landscape metrics are computed under a three-dimensional perspective. The results indicate that a more realistic and more precise representation of landscape structure is obtained on the basis of the detailed spatial scale and the true surface geometries of patches. Taking transitions into account helps smooth "edge effects" between patches and leads to more realistic quantification of fragmentation.
机译:景观多样性是生物多样性的重要组成部分,因为它决定了生境和物种的多样性。对于生态系统管理,有必要采用一种可自适应实现的景观结构监测模型。然而,现有的景观结构分析方法通常不考虑不同类型斑块之间的过渡,而这些过渡是动态的,并且在景观结构中起着多种作用。经常被忽略的信息的另一个组成部分是斑块内的“小尺度景观元素”,这会导致低估斑块内的异质性。本文提出了一种通过使用RapidEye遥感数据进行常规景观监测来解决这些问题的方法。我们将第三高度维度纳入景观结构分析中,特别是用于检测某些小规模景观结构,例如小树林,树木行和森林边界处的过渡。对于这些详细的结构,在三维角度下计算了许多景观度量。结果表明,在详细的空间比例和斑块的真实表面几何形状的基础上,可获得更现实,更精确的景观结构表示。考虑到过渡有助于平滑补丁之间的“边缘效应”,并导致更现实的碎片量化。

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