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Survival probability of a lazy prey on lattices and complex networks

机译:懒惰猎物的生存概率和复杂网络的概率

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We develop a framework to analyse the survival probability of a prey following a minimal effort evasion strategy, that is being chased byNpredators on finite lattices or complex networks. The predators independently perform random walks if the prey is not within their sighting radius, whereas, the prey only moves when a predator moves onto a node within its sighting radius. We verify the proposed framework on three different finite lattices with periodic boundaries through numerical simulations and find that the survival probability (P-sur) decays exponentially with a decay rate proportional toP(N,k) (number of permutations), wherekis the minimum number of predators required to capture a prey. We then extend the framework onto complex networks and verify its robustness on the networks generated by the Watts-Strogatz (W-S), Barabasi-Albert (B-A) models and a few real-world networks. Our analysis predicts that, for the considered lattices,P(sur)reduces as the degree of the nodes of the lattice is increased. However, for networks,P(sur)initially increases with the average degree of the nodes, reaches a maximum, and then decreases. Furthermore, we analyse the effect of the long-range connections in networks onP(sur)in W-S networks. The proposed framework enables one to study the survival probability of such a prey being hunted by multiple predators on any given structure.
机译:我们制定了一个框架,分析了牺牲逃号策略之后牺牲的猎物的生存概率,即在有限格或复杂网络上被追逐的BynPredators。如果猎物不在其瞄准半径内,捕食者独立地执行随机散步,而当捕食者移动到其瞄准半径内的节点时,捕食器仅移动。我们通过数值模拟验证了三个不同的有限格子的提议框架,通过数值模拟,发现生存概率(p-sur)与衰减率比例的顶部(n,k)(排列数)指数逐渐衰减,其中最小数量捕获猎物所需的掠食者。然后,我们将框架扩展到复杂的网络上,并验证其对Watts-Strogatz(W-S),Barabasi-Albert(B-A)模型和一些现实网络生成的网络的鲁棒性。我们的分析预测,对于所考虑的格子,P(SUR)随着晶格的节点增加而降低。但是,对于网络,P(SUR)最初随着节点的平均程度而增加,达到最大值,然后减小。此外,我们分析了W-S网络网络ONP(SUR)中的远程连接的影响。所提出的框架使人们能够研究这种猎物的生存概率在任何给定结构上被多个捕食者捕猎。

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