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A bi-level programming model for protection of hierarchical facilities under imminent attacks

机译:用于在即将发生的攻击中保护分层设施的双层编程模型

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Disorders caused by deliberate sabotage and terrorist attacks have always been considered as a major threat by the governments. Hence, identifying and planning for strengthening of critical facilities have become a priority for more security and safety. This paper presents a bi-level formulation of the r-interdiction median problem with fortification for critical hierarchical facilities. In the developed bi-level formulation, the defender, as the leader, decides to protect a certain number of facilities in each level of the hierarchical system in order to minimize the impact of the most disruptive attacks to unprotected facilities. On the other hand the attacker, as the follower, with full information about protected facilities, makes his interdiction plan to maximize the total post-attack cost incurred to the defender. We develop three metaheuristic algorithms and an exhaustive enumeration method to solve the introduced problem. Extensive computational tests on a set of randomly generated instances demonstrate the effectiveness of the developed algorithms. (C) 2015 Elsevier Ltd. All rights reserved.
机译:蓄意破坏和恐怖袭击造成的混乱一直被政府视为主要威胁。因此,确定和计划加强关键设施已成为提高安全性的优先事项。本文提出了对关键分层设施设防的r遮断中值问题的双层表示。在已开发的两级表述中,防御者作为领导者决定保护层次结构系统各层中的一定数量的设施,以最大程度地减少最具破坏性的攻击对不受保护的设施的影响。另一方面,攻击者作为追随者,拥有有关受保护设施的完整信息,因此制定了拦截计划,以最大程度地提高防御者所遭受的攻击后总费用。我们开发了三种元启发式算法和穷举枚举方法来解决引入的问题。在一组随机生成的实例上的大量计算测试证明了所开发算法的有效性。 (C)2015 Elsevier Ltd.保留所有权利。

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