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Security Analysis of Handover Key Management in 4G LTE/SAE Networks

机译:4G LTE / SAE网络中切换密钥管理的安全性分析

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The goal of 3GPP Long Term Evolution/System Architecture Evolution (LTE/SAE) is to move mobile cellular wireless technology into its fourth generation. One of the unique challenges of fourth-generation technology is how to close a security gap through which a single compromised or malicious device can jeopardize an entire mobile network because of the open nature of these networks. To meet this challenge, handover key management in the 3GPP LTE/SAE has been designed to revoke any compromised key(s) and as a consequence isolate corrupted network devices. This paper, however, identifies and details the vulnerability of this handover key management to what are called desynchronization attacks; such attacks jeopardize secure communication between users and mobile networks. Although periodic updates of the root key are an integral part of handover key management, our work here emphasizes how essential these updates are to minimizing the effect of desynchronization attacks that, as of now, cannot be effectively prevented. Our main contribution, however, is to explore how network operators can determine for themselves an optimal interval for updates that minimizes the signaling load they impose while protecting the security of user traffic. Our analytical and simulation studies demonstrate the impact of the key update interval on such performance criteria as network topology and user mobility.
机译:3GPP长期演进/系统架构演进(LTE / SAE)的目标是将移动蜂窝无线技术推向第四代。第四代技术的独特挑战之一是如何弥合安全漏洞,由于这些漏洞或网络的开放性,单个受感染或恶意设备可能会危及整个移动网络。为了应对这一挑战,已经设计了3GPP LTE / SAE中的移交密钥管理以撤消任何泄露的密钥,从而隔离了损坏的网络设备。但是,本文确定并详细介绍了此移交密钥管理对所谓的失步攻击的脆弱性。此类攻击危害了用户与移动网络之间的安全通信。尽管根密钥的定期更新是移交密钥管理的组成部分,但我们在这里的工作着重强调了这些更新对于最大程度地减少目前无法有效防止的失步攻击的影响至关重要。但是,我们的主要贡献是探索网络运营商如何为自己确定最佳更新间隔,以最大程度地减少他们施加的信令负载,同时保护用户流量的安全性。我们的分析和仿真研究表明,密钥更新间隔对网络拓扑和用户移动性等性能标准的影响。

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