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Decentralized Defence of a (Directed) Network Structure

机译:分散辩护(定向)网络结构

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We model the decentralized defence choice of agents connected in a directed graph and exposed to an external threat. The network allows players to receive goods from one or more producers through directed paths. Each agent is endowed with a finite and divisible defence resource that can be allocated to their own security or to that of their peers. The external threat is represented by either a random attack on one of the nodes or by an intelligent attacker who aims to maximize the flow-disruption by seeking to destroy one node. We show that under certain conditions a decentralized defence allocation is efficient when we assume the attacker to be strategic: a centralized allocation of defence resources which minimizes the flow-disruption coincides with a decentralized equilibrium allocation. On the other hand, when we assume a random attack, the decentralized allocation is likely to diverge from the central planner's allocation.
机译:我们将分散的防御选项模拟连接在定向图中并暴露于外部威胁。该网络允许玩家通过定向路径从一个或多个生产者接收商品。每个代理商都具有有限和可分割的防御资源,可以分配给自己的安全或对同行的安全性。外部威胁由一个节点的随机攻击或智能攻击者表示,旨在通过寻求销售一个节点来最大化流量中断的智能攻击者。我们表明,在某些条件下,当我们认为攻击者成为战略性时,分散的防御分配是有效的:防御资源的集中分配,这最大限度地减少了流量破坏与分散的平衡分配一致。另一方面,当我们假设随机攻击时,分散的分配可能从中央策划者的分配中分歧。

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