蜉蝣:分布式系统的移动目标防御框架

Noor O. Ahmed, B. Bhargava
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引用次数: 18

摘要

使用成熟的技术防止攻击者获得对系统的控制,例如;基于边界的防火墙、冗余和复制以及加密。然而,只要有足够的时间和资源,所有这些方法都可以被击败。移动目标防御(MTD)是一种防御策略,旨在通过破坏攻击者的得失平衡来减少持续对抗攻击的需要。我们提出了Mayflies,这是一个受生物启发的通用MTD框架,用于虚拟化云平台上的分布式系统。该框架使设计用于整个运行时抵御攻击的系统能够在一定时间间隔内避免攻击。讨论了框架原型的设计、算法和实现。我们用一个基于群体的Byzantime容错系统演示了该原型,并报告了初步结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mayflies: A Moving Target Defense Framework for Distributed Systems
prevent attackers from gaining control of the system using well established techniques such as; perimeter-based fire walls, redundancy and replications, and encryption. However, given sufficient time and resources, all these methods can be defeated. Moving Target Defense (MTD), is a defensive strategy that aims to reduce the need to continuously fight against attacks by disrupting attackers gain-loss balance. We present Mayflies, a bio-inspired generic MTD framework for distributed systems on virtualized cloud platforms. The framework enables systems designed to defend against attacks for their entire runtime to systems that avoid attacks in time intervals. We discuss the design, algorithms and the implementation of the framework prototype. We illustrate the prototype with a quorum-based Byzantime Fault Tolerant system and report the preliminary results.
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