Mitigation of desynchronization attack during inter-eNodeB handover key management in LTE

K. PavanKumarReddy, B. R. Chandavarkar
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引用次数: 7

Abstract

In recent years, 3rd Generation Partnership Project (3GPP) is taking on a pivotal role in standardizing the 4G network. Long Term Evolution (LTE) is a standard by the 3rd Generation Partnership Project (3GPP) and its main goal is to transform into 4G from mobile cellular wireless technology. Optimization of radio access techniques along with the improvement in the LTE systems lead 3GPP in developing the 4G standard as the next generation of LTE-Advanced (LTE-A) wireless networks. The support of full inter-working and flat Internet Protocol (IP) connectivity with heterogeneous wireless access networks in both 3GPP LTE and LTE-A architecture leads to new challenges in the security aspects. The primary challenge of LTE is to provide security to end users. Despite of security architecture available in LTE, still there exist vulnerabilities which can compromise the whole network. The major contribution of this paper is to design a new mitigation scheme which reduces the impact of desynchronization attack during the inter-eNodeB handover key management in LTE. Desynchronization attack can lead to serious consequences like compromise of User Equipment (UE) and eNodeB, during inter-eNodeB handover key management.
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LTE中enodeb间切换密钥管理过程中去同步攻击的缓解
近年来,第三代合作伙伴计划(3GPP)在4G网络标准化中发挥着举足轻重的作用。长期演进(LTE)是第三代合作伙伴计划(3GPP)的一项标准,其主要目标是从移动蜂窝无线技术转变为4G。随着无线接入技术的优化以及LTE系统的改进,3GPP正在开发4G标准,作为下一代LTE- advanced (LTE- a)无线网络。在3GPP LTE和LTE- a架构下,支持异构无线接入网络的完全互联和平面互联网协议(IP)连接,给安全方面带来了新的挑战。LTE的主要挑战是为最终用户提供安全性。尽管LTE具有良好的安全体系结构,但仍然存在危及整个网络的安全漏洞。本文的主要贡献是设计了一种新的缓解方案,以减少LTE中enodeb间切换密钥管理过程中去同步攻击的影响。在eNodeB之间的密钥移交管理过程中,去同步攻击会导致严重的后果,如UE (User Equipment)和eNodeB被泄露。
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