Strategic Defense against Stealthy Link Flooding Attacks: A Signaling Game Approach
Abdullah Aydeger, Mohammad Hossein Manshaei, Mohammad Ashiqur Rahman,, and Kemal Akkaya

TL;DR
This paper proposes a signaling game-based dynamic defense strategy against stealthy link flooding attacks, effectively balancing security and network overhead by modeling attacker-defender interactions.
Contribution
It introduces a novel game-theoretic framework to optimize Moving Target Defense strategies against SLFAs, reducing overhead while maintaining protection.
Findings
Effective mitigation of SLFAs with reduced overhead
Game-theoretic approach achieves comparable security to extensive MTD
Dynamic defense adapts to attacker behavior in real-time
Abstract
With the increasing diversity of Distributed Denial-of-Service (DDoS) attacks, it is becoming extremely challenging to design a fully protected network. For instance, Stealthy Link Flooding Attack (SLFA) is a variant of DDoS attacks that strives to block access to a target area by flooding a small set of links, and it is shown that it can bypass traditional DDoS defense mechanisms. One potential solution to tackle such SLFAs is to apply Moving Target Defense (MTD) techniques in which network settings are dynamically changed to confuse/deceive attackers, thus making it highly expensive to launch a successful attack. However, since MTD comes with some overhead to the network, to find the best strategy (i.e., when and/or to what extent) of applying it has been a major challenge. The strategy is significantly influenced by the attacker's behavior that is often difficult to guess. In this…
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