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A complex network approach to urban growth

机译:复杂的城市增长网络方法

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Economic geography can be viewed as a large and growing network of interacting activities. This fundamental network structure and the large size of such systems makes the complex network approach an attractive model for growth dynamics modeling. In this paper the authors propose the use of complex networks for geographical modeling and demonstrate how such an application can be combined with a cellular model to produce output that is consistent with large-scale regularities such as power laws and fractality. Complex networks can provide a stringent framework for growth dynamic modeling where concepts from, for example, spatial interaction models and multiplicative growth models, can be combined with the flexible representation of land and behaviour found in cellular automata and agent-based models. In addition, there exists a large body of theory for the analysis of complex networks that have direct applications in urban geographic problems. The intended use of such models is twofold: (1) to address the problem of how the empirically observed hierarchical structure of settlements can be explained as a stationary property of a stochastic evolutionary process rather than as equilibrium points in a dynamic process, and, (2) to improve the predictive quality of applied urban modeling.
机译:经济地理可以看作是一个庞大且不断发展的互动活动网络。这种基本的网络结构和此类系统的庞大规模,使得复杂的网络方法成为增长动力学建模的有吸引力的模型。在本文中,作者建议使用复杂的网络进行地理建模,并演示如何将这种应用程序与蜂窝模型结合使用,以产生与诸如功率定律和分形性之类的大规模规则一致的输出。复杂的网络可以为增长动态建模提供严格的框架,在该框架中,可以将例如空间交互模型和乘法增长模型中的概念与在细胞自动机和基于代理的模型中发现的土地和行为的灵活表示相结合。另外,存在大量理论用于分析在城市地理问题中具有直接应用的复杂网络。这种模型的预期用途是双重的:(1)解决以下问题:如何将以经验观察到的定居点的层次结构解释为随机演化过程的平稳性质,而不是动态过程中的平衡点;以及( 2)提高应用城市建模的预测质量。

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