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Titlebook: Agent-Based Models and Complexity Science in the Age of Geospatial Big Data; Selected Papers from Liliana Perez,Eun-Kyeong Kim,Raja Sengupt

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楼主: HEIR
发表于 2025-3-25 05:56:59 | 显示全部楼层
Conference proceedings 2018nce on GIScience 2016. Expert researchers in the areas of Agent-Based Modeling, Complexity Theory, Network Theory, Big Data, and emerging methods of Analysis and Visualization for new types of data explore novel complexity science approaches to dynamic geographic phenomena and their applications, ad
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Crystalizing the EU Digital Policyns, native populations, and out of state eco-tourists alike. We constructed a high fidelity, adaptable, data-driven agent based model that generalizes the socio-ecological dynamics of Kenai River, Alaska. Interactions among the model’s agents can be altered to study the impact of fishing regulation
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I. Wildhaber,A. Engel,W. Baumeistercial-ecological systems. Coupled systems are often complex adaptive systems, and the ability of ABMs to integrate heterogeneous actors, dynamic couplings, and processes across spatiotemporal scales is vital to understanding resilience in the context of complexity theory. To that end, we present the
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I. Wildhaber,A. Engel,W. Baumeister, they can be difficult to implement and validate. This study uses the invariant-variant validation approach to further model testing of a developed ABM of forest insect infestation representing spatio-temporal dynamics of the emerald ash borer (EAB). The invariant-variant method deconstructs model
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Springer Series in Wood Sciencelling method to simulate the movement of refugees in order to identify pathways of forced migration under the present crisis. The model generates refugees as agents and lets them leave conflict areas for a destination that they choose based on their respective characteristics and desires. The simula
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Springer Series in Wood Scienceoviding researchers with a wealth of animal “big-data”. Coupling such movement data with information about the environments in which the animal moves provides a rich data source that can be exploited to understand an animal’s rationale for movement, which in turn can be used to extract “rules” that
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Crystalline Cellulose and Derivativesn cities (whether people, telecommunications, goods or money), and more recently, finding strongly and weakly-connected regions. However, geometrically graphing the dependency between cities within a large network may reveal the roles of small and peripheral city agents in the system to show which c
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Liliana Perez,Eun-Kyeong Kim,Raja SenguptaProvides timely discussions on how cutting-edge technologies of data collection, management, processing, and analysis change trends in complexity science approaches in geospatial sciences.Introduces t
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Advances in Geographic Information Sciencehttp://image.papertrans.cn/a/image/151155.jpg
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