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In this paper, it is advocated that defenders should take active action to stop DDoS attacks. We propose a new model based on differential games theory. Four main actors are included, attacker, defender, victim, and Botnet. It is our belief that victims who experience an attack should cooperate with defender to defend for a DDoS-attack. The model indicates the minimum number of bots that should blocked...
In this paper, it is advocated that defenders should take active action to stop DDoS attacks. We propose a new model based on differential games theory. Four main actors are included, attacker, defender, victim, and botnet. It is our belief that victims who experience an attack should cooperate with defender to defend for a DDoS-attack. The model indicates the minimum number of Bots that should blocked...
In this paper, it is advocated that defenders should take active action to stop DDoS attacks. We propose a new model based on differential games theory. Four main actors are included, attacker, defender, victim, and botnet. It is our belief that victims who experience an attack should cooperate with defender to defend for a DDoS-attack. The model indicates the minimum number of bots that should blocked...
In this paper, we advocate that routers will filter bandwidth depletion of DDoS traffic. It is our consideration that server owners who experience an attack should work with ISP routers to defend DDoS. The main idea is to use statistical approaches of Netflow to allocate weighted bandwidth at the routers. We propose a new algorithm based on genetic algorithm to filter traffic on routers and maximize...
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