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Spatial Heterogeneity Analysis: Introducing a New Form of Spatial Entropy

机译:空间异质性分析:引入新形式的空间熵

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摘要

Distinguishing and characterizing different landscape patterns have long been the primary concerns of quantitative landscape ecology. Information theory and entropy-related metrics have provided the deepest insights in complex system analysis, and have high relevance in landscape ecology. However, ideal methods to compare different landscape patterns from an entropy view are still lacking. The overall aim of this research is to propose a new form of spatial entropy (Hs) in order to distinguish and characterize different landscape patterns. Hs is an entropy-related index based on information theory, and integrates proximity as a key spatial component into the measurement of spatial diversity. Proximity contains two aspects, i.e., total edge length and distance, and by including both aspects gives richer information about spatial pattern than metrics that only consider one aspect. Thus, Hs provides a novel way to study the spatial structures of landscape patterns where both the edge length and distance relationships are relevant. We compare the performances of Hs and other similar approaches through both simulated and real-life landscape patterns. Results show that Hs is more flexible and objective in distinguishing and characterizing different landscape patterns. We believe that this metric will facilitate the exploration of relationships between landscape patterns and ecological processes.
机译:区分和特征不同的景观模式长期以来一直是定量景观生态学的主要问题。信息理论和熵相关的指标为复杂系统分析提供了最深刻的见解,并且在景观生态学中具有高相关性。然而,仍然缺乏比较来自熵视图的不同景观模式的理想方法。该研究的整体目标是提出一种新的空间熵(HS)形式,以区分和表征不同的景观模式。 HS是基于信息理论的熵相关索引,并将接近度作为键空间分量集成到空间分集的测量中。接近包含两个方面,即总边缘长度和距离,并且通过包括两个方面,这两个方面都提供了与仅考虑一个方面的度量的空间模式的更丰富的信息。因此,HS提供了一种新的方法来研究边缘长度和距离关系的景观图案的空间结构。我们通过模拟和现实生活景观模式进行比较HS和其他类似方法的性能。结果表明,HS更加灵活,目的在区分和表征不同的景观模式。我们认为,这种指标将有助于探索景观模式与生态过程之间的关系。

著录项

  • 期刊名称 Entropy
  • 作者

    Chaojun Wang; Hongrui Zhao;

  • 作者单位
  • 年(卷),期 2018(20),6
  • 年度 2018
  • 页码 398
  • 总页数 13
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:信息熵;景观配置;热力学;空间多样性;接近;

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