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Quantifying cyber-resilience against resource-exhaustion attacks

机译:量化网络恢复力对资源 - 疲惫的攻击

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Resilience in the information sciences is notoriously difficult to define much less to measure. But in mechanical engineering, the resilience of a substance is mathematically well-defined as an area under the stress-strain curve. We combined inspiration from mechanics of materials and axioms from queuing theory in an attempt to define resilience precisely for information systems. We first examine the meaning of resilience in linguistic and engineering terms and then translate these definitions to information sciences. As a general assessment of our approach's fitness, we quantify how resilience may be measured in a simple queuing system. By using a very simple model we allow clear application of established theory while being flexible enough to apply to many other engineering contexts in information science and cyber security. We tested our definitions of resilience via simulation and analysis of networked queuing systems. We conclude with a discussion of the results and make recommendations for future work.
机译:信息科学的抵御能力难以定义更少衡量的难以定义。但在机械工程中,物质的弹性在数学上定义为应力 - 应变曲线下的区域。我们将材料和公理机械的启发与排队理论相结合,试图精确地为信息系统定义弹性。我们首先检查语言和工程术语中恢复力的含义,然后将这些定义翻译成信息科学。作为我们对方法的一般性评估,我们量化了如何在简单的排队系统中测量弹性。通过使用一个非常简单的型号,我们允许明确地应用既定理论,同时灵活地适用于信息科学和网络安全中的许多其他工程背景。我们通过对网络排队系统的仿真和分析来测试我们对弹性的定义。我们讨论了结果并提出了未来工作的建议。

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