针对云数据中心的自适应隐身能量相关DoS攻击

F. Palmieri, M. Ficco, Aniello Castiglione
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引用次数: 16

摘要

与能源相关的拒绝服务(DoS)攻击对现代大型云数据中心的影响可能不仅涉及通过这些基础设施提供的服务的可用性或质量,还涉及能源账单方面的运营成本。具体来说,检测攻击所需的时间越长,对总体能耗的影响就越大,因此对相关费用的影响也就越大。因此,必须特别注意低速率的DoS攻击。他们的目标是尽量减少他们的可见性,与此同时,可能与更传统的dos一样有害,甚至更糟。这些复杂的攻击是通过利用精心设计的低速率流量模式,在目标系统上诱导最坏情况下的能量需求。在这项工作中,我们引入了一种策略,用于编排自适应可变速率攻击,动态改变其攻击模式和数据包速率,以便通过浪费尽可能多的能量来最小化其可检测性并最大化其与能源相关的影响。我们描述了所提议的策略背后的细节,并分析了其对大型云数据中心基础设施中运行的典型服务器的潜在影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive Stealth Energy-Related DoS Attacks against Cloud Data Centers
The effects of energy-related Denial of Service (DoS) attacks on modern large-scale cloud data centers may involve not only the availability or quality of the service delivered through these infrastructures, but also their operational costs in terms of energy bill. Specifically, the longer is the time needed to detect the attack, the higher is the impact on the overall energy consumption and hence on the related expenses. Therefore, particular attention has to be paid for low-rate DoS attacks. They aim at minimizing their visibility, and at the same time, can be as harmful as the more traditional DoSs or even worse. These sophisticated attacks are tailored to induce the worst-case energy demands on the target system by leveraging properly crafted low-rate traffic patterns. In this work, we introduce a strategy for orchestrating adaptive variable-rate attacks that dynamically change their offending patterns and packet rate in order to minimize their detectability and maximize their energy-related impact, by wasting as much energy as possible. We describe both the details behind the proposed strategy, and analyze its potential effects on typical servers operating within large-scale cloud data center infrastructures.
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