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A Load Balancing Algorithm against DDoS attacks in beyond 3G wireless networks

机译:超大3G无线网络中DDOS攻击的负载平衡算法

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A Distributed Denial of Service (DDoS) attack aims at exhausting the resources of a communication system. A large amount of requests is sent to the targeted system by malicious users: the overload compromises the correct working of the structure. If the attack is successful, the system stops working. The assault does not provide the hacker with any sensitive information; so it does not appear as dangerous as it really is. Nevertheless, the denial of service is a huge security risk for Long Term Evolution (LTE) networks. In order to avoid this kind of risk, we present a mechanism that relocates the resources requested by the users, both voice and data. It is able to transfer the overload from congested eNodeBs to eNodeBs with free capacities. The mechanism is a Load Balancing Algorithm, fully integrated in the architecture of LTE networks. We simulated the attack scenario through Network Simulator 3 (ns-3). If the proposed algorithm is active, in case of a DDoS attack, communication services are always available for users.
机译:分布式拒绝服务(DDOS)攻击旨在耗尽通信系统的资源。通过恶意用户将大量请求发送到目标系统:过载会影响结构的正确工作。如果攻击成功,系统会停止工作。攻击不会向黑客提供任何敏感信息;所以它并不像真的一样危险。尽管如此,拒绝服务是长期演进(LTE)网络的巨大安全风险。为了避免这种风险,我们展示了一种机制来恢复用户既有语音和数据所要求的资源。它能够将过载从拥挤的eNodeB转移到具有可自由容量的eNodeB。该机制是负载平衡算法,完全集成在LTE网络的体系结构中。我们通过网络模拟器3(NS-3)模拟攻击情景。如果所提出的算法处于活动状态,则在DDOS攻击的情况下,通信服务始终可供用户使用。

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