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Modeling structural change in spatial system dynamics: A Daisyworld example

机译:模拟空间系统动力学中的结构变化:Daisyworld示例

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摘要

System dynamics (SD) is an effective approach for helping reveal the temporal behavior of complex systems. Although there have been recent developments in expanding SD to include systems’ spatial dependencies, most applications have been restricted to the simulation of diffusion processes; this is especially true for models on structural change (e.g. LULC modeling). To address this shortcoming, a Python program is proposed to tightly couple SD software to a Geographic Information System (GIS). The approach provides the required capacities for handling bidirectional and synchronized interactions of operations between SD and GIS. In order to illustrate the concept and the techniques proposed for simulating structural changes, a fictitious environment called Daisyworld has been recreated in a spatial system dynamics (SSD) environment. The comparison of spatial and non-spatial simulations emphasizes the importance of considering spatio-temporal feedbacks. Finally, practical applications of structural change models in agriculture and disaster management are proposed.
机译:系统动力学(SD)是帮助揭示复杂系统的时间行为的有效方法。尽管最近在扩展SD以包含系统的空间依赖性方面取得了一些进展,但大多数应用程序仅限于扩散过程的仿真。对于结构变化模型(例如LULC建模)尤其如此。为了解决这个缺点,提出了一个Python程序来将SD软件紧密耦合到地理信息系统(GIS)。该方法提供了处理SD和GIS之间的双向和同步交互操作所需的能力。为了说明提出的用于模拟结构变化的概念和技术,已在空间系统动力学(SSD)环境中重新创建了一个名为Daisyworld的虚拟环境。空间模拟和非空间模拟的比较强调了考虑时空反馈的重要性。最后,提出了结构变化模型在农业和灾害管理中的实际应用。

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