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Two Sequential Attacks of a Parallel System when Defense and Attack Resources are Expendable

机译:防御和攻击资源消耗Exp尽的并行系统的两次顺序攻击

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The paper compares the efficiency of single and double attack against a system consisting of identical parallel elements (1-out-of-N system). An attacker tries to maximize the system vulnerability (probability of total destruction), and the defender tries to minimize it. The attacker and the defender distribute their constrained resources optimally across two attacks. The attacker attacks all elements in the first attack, and all surviving elements in the second attack. The defender protects all elements before the first attack, and protects all surviving elements before the second attack. Both agents decide how to distribute their resources between the two attacks before the first attack. Both agents' resources are expendable and last only one attack. Both agents observe which elements are destroyed and not destroyed in the first attack, and apply their remaining resources into attacking and protecting the remaining elements in the second attack. First the optimal attack and defense strategy against a system with a fixed number of elements is analyzed. Thereafter a minmax two period game between the attacker and the defender is considered in which the defender distributes its constrained resource between the two attacks as well as between deploying redundant elements and protecting them against the attacks.
机译:本文比较了由相同并行元素组成的系统(N分之一的系统)的单次和两次攻击的效率。攻击者试图使系统漏洞(完全破坏的可能性)最大化,而防御者则试图将其最小化。攻击者和防御者最好在两次攻击之间分配受约束的资源。攻击者在第一次攻击中攻击所有元素,在第二次攻击中攻击所有幸存元素。防御者在第一次攻击之前保护所有元素,并在第二次攻击之前保护所有幸存元素。在第一次攻击之前,两个代理都决定如何在两次攻击之间分配资源。两种代理程序的资源都是消耗性的,只能持续一次攻击。两个代理都观察到在第一次攻击中哪些元素被破坏而没有被破坏,并在第二次攻击中将其剩余资源用于攻击和保护剩余元素。首先,分析针对具有固定数量元素的系统的最佳攻防策略。此后,考虑了攻击者与防御者之间的最小最大两期博弈,其中防御者在两次攻击之间以及在部署冗余元素和保护它们免受攻击之间分配其受约束的资源。

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