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SOS

机译:紧急求救

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摘要

Denial of service (DoS) attacks continue to threaten the reliability of networking systems. Previous approaches for protecting networks from DoS attacks are reactive in that they wait for an attack to be launched before taking appropriate measures to protect the network. This leaves the door open for other attacks that use more sophisticated methods to mask their traffic.We propose an architecture called Secure Overlay Services (SOS) that proactively prevents DoS attacks, geared toward supporting Emergency Services or similar types of communication. The architecture is constructed using a combination of secure overlay tunneling, routing via consistent hashing, and filtering. We reduce the probability of successful attacks by (i) performing intensive filtering near protected network edges, pushing the attack point perimeter into the core of the network, where high-speed routers can handle the volume of attack traffic, and (ii) introducing randomness and anonymity into the architecture, making it difficult for an attacker to target nodes along the path to a specific SOS-protected destination.Using simple analytical models, we evaluate the likelihood that an attacker can successfully launch a DoS attack against an SOS-protected network. Our analysis demonstrates that such an architecture reduces the likelihood of a successful attack to minuscule levels.
机译:拒绝服务(DoS)攻击继续威胁着网络系统的可靠性。先前用于保护网络免受DoS攻击的方法是被动的,因为它们在采取适当的措施来保护网络之前会等待发起攻击。这为其他使用更复杂方法掩盖其流量的攻击打开了大门。我们提出了一种称为安全覆盖服务(SOS)的体系结构,该体系可主动防止DoS攻击,旨在支持紧急服务或类似类型的通信。该体系结构是结合使用安全覆盖隧道,通过一致性哈希进行路由和过滤的组合而构建的。我们通过(i)在受保护的网络边缘附近执行密集过滤,将攻击点边界推入网络的核心(高速路由器可以处理大量攻击流量)以及(ii)引入随机性,来降低成功攻击的可能性以及对架构的匿名性,使攻击者很难将目标锁定到特定受SOS保护的目的地的路径上。使用简单的分析模型,我们评估了攻击者可以成功地对受SOS保护的网络发起DoS攻击的可能性。我们的分析表明,这样的体系结构可将成功攻击的可能性降低到微不足道的水平。

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