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Performance Modeling of Moving Target Defenses with Reconfiguration Limits

机译:使用重新配置限制移动目标防御性能模型

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摘要

Moving Target Defense (MTD) has recently emerged as a game changer in the security landscape due to its proven potential to introduce asymmetric uncertainty that gives the defender a tactical advantage over the attacker. Many different MTD techniques have been developed, but, despite the huge progress made in this area, critical gaps still exist with respect to the problem of studying and quantifying the cost and benefits of deploying MTDs. In fact, all existing techniques address a very narrow set of attack vectors, and, due to the lack of shared metrics, it is difficult to quantify and compare multiple techniques. Building on our preliminary work in this field, we propose a quantitative analytic model for assessing the resource availability and performance of MTDs, and a method for maximizing a utility function that captures the tradeoffs between security and performance. The proposed model generalizes our previous model and can be applied to a wider range of MTDs and operational scenarios to improve availability and performance by imposing limits on the maximum number of resources that can be in the process of being reconfigured. The analytic results are validated by simulation and experimentation, confirming the accuracy of our model.
机译:由于其经过验证的潜力来引入不对称的不确定性,迁移目标防御(MTD)最近被出现为安全景观中的游戏更换器。许多不同的MTD技术已经开发出来,但是,尽管在该领域取得了巨大进展,但对于研究和量化部署MTD的成本和益处来说,仍存在严重差距。实际上,所有现有技术都在寻址一组非常狭窄的攻击向量,并且由于缺乏共享度量,难以量化和比较多种技术。建立我们在本领域的初步工作,提出了一种定量分析模型,用于评估MTD的资源可用性和性能,以及最大化禁用安全性和性能之间权衡的实用程序功能的方法。建议的模型概括了我们之前的模型,可以应用于更广泛的MTD和操作场景,以通过对正在重新配置过程中的最大资源的限制来提高可用性和性能。通过仿真和实验验证了分析结果,确认了我们模型的准确性。

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