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Dimensioning urbanization - An advanced procedure for characterizing human settlement properties and patterns using spatial network analysis

机译:规模化城市化-使用空间网络分析表征人类住区特性和模式的高级程序

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The ongoing global phenomenon of people migrating to cities is referred to as urbanization and primarily manifests itself in the continuous and often rapid spatial expansion of urban agglomerations. Nevertheless, the dimension and structuring behind this process can be considered as a spatial continuum ranging from rural to urban settlements. Accordingly, gathering a detailed global knowledge about the size, form (e.g., compact or spread) and spatial distribution (e.g., dispersed or nucleated) of different types of settlements represents a major issue to better understand urbanization and develop effective mitigation, adaptation and management strategies. In such context, this paper introduces a novel procedure specifically designed to characterize settlement properties and patterns, which can be applied at high spatial resolution (hence being capable of accounting even for single villages and dwellings) from the local up to continental or global scale using binary maps (i.e., figure-ground diagrams describing the spatial distribution of built-up and non-built-up areas) derived from Earth observation (EO) products. Starting from a binary mask depicting built-up and non-built-up areas over a given study region, the proposed method first delineates settlement objects. Next, a spatial network is created where the nodes correspond to the centroids of the extracted objects and the edges connect neighboring objects lying within a prefixed Euclidean distance from each other. Suitable attributes describing the geometrical properties of the associated objects are then computed for all the nodes and specific weights of interest are assigned to the edges of the network. Finally, indexes modeling the relationships between different nodes are calculated to properly characterize the relevance of different settlements within the spatial network. Several experimental results obtained on the basis of figure-ground diagrams derived from existing EO-based geo-information layers from local to continental level assess the capabilities of the presented approach and demonstrate its potential to provide key information to quantitatively and qualitatively characterize settlement properties and patterns in any spatial detail (depending on the spatial resolution of the input data) and at arbitrary spatial scales. (C) 2014 Elsevier Ltd. All rights reserved.
机译:持续不断的全球人口迁移现象被称为城市化,主要表现为城市群持续不断且经常快速的空间扩张。然而,这一过程背后的规模和结构可以看作是一个从农村到城市住区的空间连续体。因此,收集有关不同类型定居点的大小,形式(例如,紧凑或分布)和空间分布(例如,分散或成核)的详细全球知识,是更好地了解城市化并发展有效的缓解,适应和管理的主要问题。策略。在这种情况下,本文介绍了一种新颖的程序,该程序专门用于刻画聚落的性质和模式,可以使用从本地到大陆或全球范围内的高空间分辨率(因此甚至可以考虑单个村庄和住宅)。从地球观测(EO)产品获得的二元图(即描述已建成和未建成区域的空间分布的地图)。从描述给定研究区域内已建成和未建成区域的二进制掩码开始,所提出的方法首先描绘了沉降对象。接下来,创建一个空间网络,在该网络中,节点对应于提取对象的质心,并且边缘将位于相邻欧氏距离之内的相邻对象连接起来。然后为所有节点计算描述关联对象的几何特性的合适属性,并将特定的目标权重分配给网络的边缘。最后,计算对不同节点之间的关系进行建模的索引,以正确表征空间网络内不同住区的相关性。根据从现有的从EO到本地的基于EO的地理信息层得出的地物图获得的一些实验结果,评估了所提出方法的功能,并证明了其提供定量和定性表征沉降特性的关键信息的潜力。任何空间细节(取决于输入数据的空间分辨率)和任意空间比例的图形。 (C)2014 Elsevier Ltd.保留所有权利。

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