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Combining system dynamics and agent-based modeling to analyze social-ecological interactions - an example from modeling restoration of a shallow lake

机译:结合系统动力学和基于主体的模型来分析社会生态相互作用-以浅水湖恢复模型为例

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摘要

Modeling social-ecological interactions between humans and ecosystems to analyze their implications for sustainable management of social-ecological systems (SES) has multiple challenges. When integrating social and ecological dynamics, which are often studied separately, one has to deal with different modeling paradigms, levels of analysis, temporal and spatial scales, and data availabilities in the social and ecological domains. A major challenge, for instance, is linking the emergent patterns from individual micro-level human decisions to system level processes such as reinforcing feedbacks determining the state of the ecosystem. We propose building a hybrid model that combines a system dynamics with an agent-based approach to address some of these challenges. In particular, we present a procedure for model development and analysis that successively builds up complexity and understanding of model dynamics, particular with respect to feedbacks between the social and ecological system components. The proposed steps allow for a systematic increase of the coupling between the submodels and building confidence in the model before deploying it to study the coupled dynamics. The procedure consists of steps for (i) specifying the characteristics of the link between the social and ecological systems, (ii) validating the decoupled submodels, (iii) doing sensitivity analysis of the decoupled submodels with respect to the drivers from the respective other subsystem and, finally (iv) analyzing the coupled model. We illustrate the procedure and discuss opportunities and limitations of hybrid models against the background of an archetypical SES case study, namely the restoration of a turbid lake. Our approach exemplifies how a hybrid model is used to unpack SES complexity and analyze interactions between ecological dynamics and micro-level human actions. We discuss the benefits and challenges of combining a system dynamics models as an aggregated view with an agent-based model as a disaggregated view to improve social-ecological system understanding.
机译:对人类与生态系统之间的社会生态互动进行建模以分析其对社会生态系统(SES)可持续管理的影响具有多个挑战。在整合经常单独研究的社会和生态动力学时,必须处理社会和生态领域中的不同建模范式,分析级别,时空尺度和数据可用性。例如,一项重大挑战是将新兴的模式从单个微观级别的人类决策与系统级别的流程联系起来,例如加强确定生态系统状态的反馈。我们建议构建一个混合模型,该模型将系统动力学与基于代理的方法结合起来以应对其中的一些挑战。特别是,我们提出了一种用于模型开发和分析的程序,该程序可以逐步建立模型动力学的复杂性和理解力,尤其是在社会和生态系统组成部分之间的反馈方面。建议的步骤允许系统地增加子模型之间的耦合,并在部署模型以研究耦合动力学之前建立对模型的信心。该过程包括以下步骤:(i)指定社会与生态系统之间链接的特征;(ii)验证解耦的子模型;(iii)对解耦的子模型相对于各个其他子系统的驱动程序进行敏感性分析最后,(iv)分析耦合模型。我们以典型的SES案例研究为背景,举例说明了程序并讨论了混合模型的机会和局限性,即恢复浑浊的湖泊。我们的方法举例说明了如何使用混合模型来解开SES的复杂性并分析生态动力学与微观人类行为之间的相互作用。我们讨论了将系统动力学模型作为聚合视图与基于代理的模型作为分解视图相结合以提高对社会生态系统的理解的好处和挑战。

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