circpg10_fast_cfix_T25.csv from The effect of network topology on optimal exploration strategies and the evolution of cooperation in a mobile population
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https://rs.figshare.com/articles/circpg10_fast_cfix_T25_csv_from_The_effect_of_network_topology_on_optimal_exploration_strategies_and_the_evolution_of_cooperation_in_a_mobile_population/9919739
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We model a mobile population interacting over an underlying spatial structure using a Markov movement model. Interactions take the form of public goods games, and can feature an arbitrary group size. Individuals choose strategically to remain at their current location or to move to a neighbouring location, depending upon their exploration strategy and the current composition of their group. This builds upon previous work where the underlying structure was a complete graph (i.e. there was effectively no structure). Here, we consider alternative network structures and a wider variety of, mainly larger, populations. Previously, we had found when cooperation could evolve, depending upon the values of a range of population parameters. In our current work, we see that the complete graph considered before promotes stability, with populations of cooperators or defectors being relatively hard to replace. By contrast, the star graph promotes instability, and often neither type of population can resist replacement. We discuss potential reasons for this in terms of network topology.
本研究采用马尔可夫运动模型(Markov movement model),对基于底层空间结构开展互动的移动种群进行建模。种群间的互动以公共品博弈(public goods game)形式展开,且可支持任意规模的群组。个体将结合自身的探索策略与当前群组的组成情况,策略性地选择停留在当前位置,或是迁移至邻近位置。本研究基于此前的相关工作拓展而来——此前的研究中,底层互动结构为完全图(complete graph,即本质上无结构化特征)。而在本次研究中,我们考虑了多样化的替代网络结构,并纳入了更多样化、且主要为更大规模的种群样本。过往研究曾发现,合作行为的演化与否取决于一系列种群参数的取值。在本次研究中我们发现,此前研究所采用的完全图结构能够提升种群稳定性,合作者或背叛者种群相对难以被替代。与之相反,星型图结构则会加剧种群不稳定性,两类种群通常均难以抵御替代。我们将从网络拓扑(network topology)的角度,探讨产生这一差异的潜在原因。
提供机构:
The Royal Society
创建时间:
2019-09-30



