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Assessing the Resilience of Socio-Ecosystems:Coupling Viability Theory and Active Learning with kd-Trees.Application to Bilingual Societies

机译:评估社会生态系统的恢复力:耦合活力理论与KD树的活跃学习。应用于双语社团

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This paper proposes a new algorithm to compute the resilience of a social system or an ecosystem when it is defined in the framework of the mathematical viability theory.It is applied to the problem of language coexistence: Although bilingual societies do exist,many languages have disappeared and some seem endangered presently.Mathematical models of language competition generally conclude that one language will disappear,except when the relative prestige of the languages can be modified.The viability theory provides concepts and tools that are suitable to study the resilience,but with severe computational limits since it uses extensive search on regular grids.The method we propose considers the computation of the viability output sets as an active learning problem with the objective of restraining the number of calls to the model and information storage.We adapt a kd-tree algorithm to approximate the level sets of the resilience value.We prove that this algorithm converges to the output sets defined by the viability theory (viability kernel and capture basin).The resilience value we compute can then be used to propose a policy of action in risky situations such as migration flows.
机译:本文提出了一种新的算法来计算的社会制度或当在theory.It应用到语言共存问题的数学生存能力的框架中定义的生态系统的恢复能力:尽管双语社会中确实存在,很多语言都消失了语言的竞争和一些似乎濒危presently.Mathematical模型一般的结论是一种语言将消失,除了当语言的相对声望可以modified.The生存理论提供了概念和适合学习的弹性工具,但有严重的计算因为它提出了定期grids.The方法使用广泛的搜索范围考虑可行性输出集的计算与客观限制呼叫的模型和信息数量的主动学习问题storage.We适应kd树算法近似水平集的弹性value.We表明,该算法收敛于outpu由生存理论定义吨集(生存能力内核和捕获盆)。该弹性值我们计算然后可以用于建议行动政策在危险情况,例如迁移流动。

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