通过异构网络加固选项幸存无法修补的漏洞

D. Borbor, Lingyu Wang, S. Jajodia, A. Singhal
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引用次数: 7

摘要

关键任务网络的管理员通常不得不担心非传统威胁,例如,如何处理已知但无法修补的漏洞,以及如何提高网络对潜在未知漏洞的恢复能力。因此,网络加固是一种众所周知的预防性安全解决方案,其目的是通过采取主动措施(即加固选项)来提高网络安全性。然而,大多数现有的网络加固方法依赖于单一的加固选项,例如禁用不必要的服务,这在处理未知和无法修补的漏洞时变得不那么有效。缺乏一种异构方法,可以以最佳方式组合不同的强化选项来处理未知和不可修补的漏洞。本文通过将业务多样化、防火墙规则修改、网络资源的增减迁移、访问控制等多种强化选项统一到同一模型下,提出了这种方法。然后,我们应用旨在评估网络对未知和不可修补漏洞的弹性的安全指标,从而得出在给定成本约束下最大化安全性的最佳解决方案。最后,通过仿真研究了该方案对不可修补漏洞的有效性。
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Surviving unpatchable vulnerabilities through heterogeneous network hardening options
The administrators of a mission critical network usually have to worry about non-traditional threats, e.g., how to live with known, but unpatchable vulnerabilities, and how to improve the network’s resilience against potentially unknown vulnerabilities. To this end, network hardening is a well-known preventive security solution that aims to improve network security by taking proactive actions, namely, hardening options. However, most existing network hardening approaches rely on a single hardening option, such as disabling unnecessary services, which becomes less effective when it comes to dealing with unknown and unpatchable vulnerabilities. There lacks a heterogeneous approach that can combine different hardening options in an optimal way to deal with both unknown and unpatchable vulnerabilities. In this paper, we propose such an approach by unifying multiple hardening options, such as service diversification, firewall rule modification, adding, removing, and relocating network resources, and access control, all under the same model. We then apply security metrics designed for evaluating network resilience against unknown and unpatchable vulnerabilities, and consequently derive optimal solutions to maximize security under given cost constraints. Finally, we study the effectiveness of our solution against unpatchable vulnerabilities through simulations.
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