Techniques for the dynamic randomization of network attributes

A. Chavez, W. Stout, S. Peisert
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引用次数: 29

Abstract

Critical infrastructure control systems continue to foster predictable communication paths and static configurations that allow easy access to our networked critical infrastructure around the world. This makes them attractive and easy targets for cyber-attack. We have developed technologies that address these attack vectors by automatically reconfiguring network settings. Applying these protective measures will convert control systems into "moving targets" that proactively defend themselves against attack. This "Moving Target Defense" (MTD) revolves about the movement of network reconfiguration, securely communicating reconfiguration specifications to other network nodes as required, and ensuring that connectivity between nodes is uninterrupted. Software-defined Networking (SDN) is leveraged to meet many of these goals. Our MTD approach eliminates adversaries targeting known static attributes of network devices and systems, and consists of the following three techniques: (1) Network Randomization for TCP/UDP Ports; (2) Network Randomization for IP Addresses; (3) Network Randomization for Network Paths In this paper, we describe the implementation of the aforementioned technologies. We also discuss the individual and collective successes for the techniques, challenges for deployment, constraints and assumptions, and the performance implications for each technique.
网络属性的动态随机化技术
关键基础设施控制系统继续培育可预测的通信路径和静态配置,使我们能够轻松访问全球联网的关键基础设施。这使得他们很有吸引力,很容易成为网络攻击的目标。我们已经开发了通过自动重新配置网络设置来解决这些攻击向量的技术。采用这些保护措施将把控制系统转变为“移动目标”,主动保护自己免受攻击。这种“移动目标防御”(MTD)围绕着网络重新配置的移动,根据需要安全地将重新配置规范传递给其他网络节点,并确保节点之间的连接不间断。软件定义网络(SDN)被用来满足许多这样的目标。我们的MTD方法消除了针对网络设备和系统已知静态属性的攻击者,并由以下三种技术组成:(1)TCP/UDP端口的网络随机化;(2) IP地址网络随机化;(3)网络路径的网络随机化本文描述了上述技术的实现。我们还讨论了这些技术的个人和集体成功、部署的挑战、约束和假设,以及每种技术的性能含义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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