Anonymous blockchain Based Routing For Moving-target Defense Across Federated Clouds

Yousra Magdy, Mona S. Kashkoush, M. Azab, M. Rizk
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引用次数: 3

Abstract

Cloud federation is the evolution of modern cloud computing. It provides better resource-sharing, perfect resourceutilization, and load-balancing. However, the heterogeneity of security policies and configurations between cloud service providers makes it hard for users to totally trust them. Further, the severe impact of modern cloud attacks such as cross-side channels on federated environments is a major roadblock against such evolution. Securing users’ capsules (Virtual Machines and containers) against cross-side channel attacks is considered as a big challenge to cloud service providers. Moving-target Defense (MtD) by live capsule migration was introduced as an effective mechanism to overcome such challenge. However, researchers noted that even with MtD, migrated capsules can still be tracked via routing information. In this paper, we propose a novel Blockchain-based routing mechanism to enable trace-resistant Moving-target Defence (BMtD) to enable anonymous live cross-cloud migrations of running capsules in federated cloud environments. Exploiting the Vulnerable, Exposed, Attacked, Recovered (VEAR) model, simulation results demonstrated the effectiveness of BMtD in minimizing viral attack dispersion.
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基于匿名区块链的跨联邦云移动目标防御路由
云联盟是现代云计算的演变。它提供了更好的资源共享、完美的资源利用和负载平衡。然而,云服务提供商之间的安全策略和配置的异质性使得用户很难完全信任它们。此外,现代云攻击(如联邦环境中的跨侧通道)的严重影响是阻碍这种发展的主要障碍。保护用户的胶囊(虚拟机和容器)免受跨侧通道攻击被认为是云服务提供商面临的一大挑战。利用活胶囊迁移进行移动目标防御(MtD)是克服这一挑战的有效机制。然而,研究人员指出,即使使用MtD,迁移的胶囊仍然可以通过路由信息进行跟踪。在本文中,我们提出了一种新的基于区块链的路由机制,以实现抗跟踪移动目标防御(BMtD),从而在联邦云环境中实现运行胶囊的匿名实时跨云迁移。利用脆弱,暴露,攻击,恢复(VEAR)模型,仿真结果证明了BMtD在最小化病毒攻击分散方面的有效性。
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