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Saving energy in aggressive intrusion detection through dynamic latency sensitivity recognition

机译:通过动态等待时间敏感性识别节省主动入侵检测的能量

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摘要

In an always connected world, cyber-attacks and computer security breaches can produce significant financial damages as well as introduce new risks and menaces in everyday's life. As a consequence, more and more sophisticated packet screening/filtering solutions are deployed everywhere, typically on network border devices, in order to sanitize Internet traffic. Despite the obvious benefits associated to the proactive detection of security threats, these devices, by performing deep packet inspection and inline analysis, may both affect latency sensitive traffic introducing non-negligible delays, and increase the energy demand at the network element level. Starting from these considerations, we present a selective routing and intrusion detection technique based on dynamic statistical analysis. Our technique separates latency-sensitive traffic from latency-insensitive one and adaptively organizes the intrusion detection activities over multiple nodes. This allows suppressing directly at the network ingress, when possible, all the undesired components of latency-insensitive traffic and distributing on the innermost nodes the security check for latency sensitive flows, prioritizing routing activities over security scanning ones. Our final goal is demonstrating that selective intrusion detection can result in significant energy savings without adversely affecting latency-sensitive traffic by introducing unacceptable processing delays. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在一个始终保持联系的世界中,网络攻击和计算机安全漏洞可能造成重大的财务损失,并在日常生活中带来新的风险和威胁。结果,越来越多的复杂数据包筛选/过滤解决方案被部署到任何地方,通常在网络边界设备上,以清理Internet流量。尽管与主动检测安全威胁有明显的好处,但是这些设备通过执行深度数据包检查和内联分析,可能会影响对延迟敏感的流量,从而引入不可忽略的延迟,并且会增加网元级别的能源需求。从这些考虑出发,我们提出一种基于动态统计分析的选择性路由和入侵检测技术。我们的技术将对延迟敏感的流量与对延迟不敏感的流量分开,并自适应地组织多个节点上的入侵检测活动。这样,可以在可能的情况下直接在网络入口处抑制所有不需要的对延迟不敏感的流量的组件,并在最内层的节点上分发对延迟不敏感流的安全检查,从而将路由活动优先于安全扫描。我们的最终目标是证明选择性入侵检测可以通过引入不可接受的处理延迟来节省大量能源,而不会对延迟敏感的流量产生不利影响。 (C)2017 Elsevier Ltd.保留所有权利。

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