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Resource allocation among multiple targets for a defender-attacker game with false targets consideration

机译:具有假目标考虑的防御者攻击者游戏的多个目标之间的资源分配

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摘要

Appropriate resource allocation among multiple targets plays a vital role in the defender-attacker game. Traditional methods seldom consider the optimal resource allocation with more than one strategy among multiple targets. Accordingly, we assume that the defender moves first, allocating resources in deploying different false targets and strengthening the genuine ones among multiple targets. The attacker moves after observing the defender's move, distributing resources in identifying false targets and then attacking the genuine ones concerning multiple targets. Each player aims to maximize their own overall expected utility given any of the other player's move. The optimal resource distribution between target intelligence/protection for the defender and target identification/attack efforts among multiple targets for the attacker is studied. We model and obtain analytical equilibrium results under various parameter settings. Our results show that increased intelligence (impact) contest intensities lead to lower (higher) attacker resources in intelligence (attack). Moreover, the zero-sum game where both players share the same preferences without additional payoff consideration results in the worst losses for the defender. The forgoing method offers an original way to approach the resource allocation problems in security defense fields.
机译:多个目标之间的适当资源分配在防御者攻击者游戏中起着至关重要的作用。传统方法很少考虑多个目标中具有多个策略的最佳资源分配。因此,我们假设Defender首先移动,分配部署不同的假目标并在多个目标之间加强真正的资源。攻击者在观察后卫的移动后移动,在识别虚假目标时分发资源,然后攻击关于多个目标的真正的资源。考虑到任何其他玩家的举动,每个玩家旨在最大限度地提高自己的整体预期效用。研究了攻击者的目标智能/保护之间的最佳资源分布和攻击者多个目标之间的目标识别/攻击努力。我们在各种参数设置下模拟并获得分析均衡结果。我们的研究结果表明,智力增加(影响)竞赛强度导致智力(攻击)的攻击者资源降低(较高)。此外,零和游戏两个玩家共享相同的偏好,没有额外的收益考虑导致后卫的最严重的损失。上述方法提供了一种原始方法来接近安全防御字段中的资源分配问题。

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