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Motion patterns and phase-transition of a defender-intruder problem and optimal interception strategy of the defender

机译:防御者-入侵者问题的运动模式和相变以及防御者的最佳拦截策略

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In this paper, we consider a defense-intrusion interaction, in which an intruder is attracted by a protected stationary target but repulsed by a defender; while the defender tries to move towards an appropriate interception position (IP) between the intruder and the target in order to intercept the intruder and expel the intruder away from the target as maximum as possible. Intuitionally, to keep the intruder further away, one may wonder that: is it a better strategy for the defender trying to approach the intruder as near as possible? Unexpectedly and interestingly enough, this is not always the case. We first introduce the flexibility for IP selection, then investigate the system dynamics and the stable motion patterns, and characterize the phase-transition surface for the motion patterns. We show that, the phase-transition surface just defines the optimal interception strategy of the defender for IP selection; and from the perspective of mobility of agents, the optimal strategy just depends on relative mobility of the two agents. (C) 2015 Elsevier B.V. All rights reserved.
机译:在本文中,我们考虑了防御-入侵交互,其中入侵者被受保护的固定目标吸引,但被防御者击退。防御者试图朝入侵者和目标之间的适当拦截位置(IP)移动,以拦截入侵者并将入侵者尽可能地远离目标。从直觉上讲,要使入侵者保持更远的距离,可能有人会想:对于试图尽可能接近入侵者的防御者,这是否是一种更好的策略?出乎意料且有趣的是,并非总是如此。我们首先介绍IP选择的灵活性,然后研究系统动力学和稳定的运动模式,并描述运动模式的相变表面。我们证明,相变表面仅定义了防御者选择IP的最佳拦截策略;从代理人的流动性的角度来看,最优策略仅取决于两种代理人的相对流动性。 (C)2015 Elsevier B.V.保留所有权利。

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