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Impact of Coupling of Distributed Denial of Service Attack with Routing on Throughput of Packet Switching Network

机译:分布式拒绝服务攻击耦合的影响与数据包交换网络吞吐量

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We study the effects of coupling of the Distributed Denial of Service (DDoS) attack with routing on a packet switching network (PSN) performance measured by throughput. We conduct our study using PSN model that it is an abstraction of the Network Layer of the 7-Layer ISO OSI Reference Model. Our study demonstrates that even a very "weak" DDoS attack on a network using static routing causes degradation of the network throughput. The values of the throughput almost immediately decrease with each onset of a DDoS attack and they decrease with the increase of the number of attackers. However, this is not the case when the network uses an adaptive routing instead. We consider two different types of adaptive routings and our study shows that the adaptive routings have ability to process efficiently extra packet traffic generated by DDoS attacks without compromising the network throughput when the total amount of the incoming packet traffic, i.e. the regular one and the one coming from an attack, is lower than the one corresponding to the critical source load value.
机译:我们研究了通过吞吐量测量的分组交换网络(PSN)性能路由的分布式拒绝服务(DDOS)攻击耦合的影响。我们使用PSN模型进行研究,即它是7层ISO OSI参考模型的网络层的抽象。我们的研究表明,即使使用静态路由对网络上的“弱”DDOS攻击也会导致网络吞吐量的降级。吞吐量的值几乎立即随着DDOS攻击的每个发作而减少,并且随着攻击者数量的增加而减少。但是,当网络使用自适应路由时,这不是这种情况。我们考虑两种不同类型的自适应路由,我们的研究表明,自适应路由有能力通过DDOS攻击产生有效的额外数据包流量,而不会在传入数据包流量的总量,即常规持续的情况下损害网络吞吐量来自攻击,低于对应于临界源负载值的一个。

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