W-AKA:在Wi-Fi上使用安全通道的隐私增强LTE-AKA

Khodor Hamandi, Imad Sarji, I. Elhajj, A. Chehab, A. Kayssi
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引用次数: 6

摘要

在本文中,我们提出了一种增强隐私的LTE认证和密钥协议方案W-AKA。该方案承诺通过使用动态身份而不是静态IMSI来改善隐私。为了交换IMSI并通知用户新的随机化身份,我们提出了两种方法。第一种方法使用Wi-Fi安全侧信道,因为Wi-Fi热点变得无处不在。另一种方法被合并为移动AKA的一部分。我们还提出了一种生成随机临时身份的简单方法。我们研究了W-AKA在哪些方面优于原始AKA以及在哪些方面表现不佳。我们的分析表明,在Wi-Fi存在的情况下,除非攻击者堵塞Wi-Fi通道,否则W-AKA可以承受主动和被动攻击。另一方面,在没有Wi-Fi的情况下,它只能减轻被动攻击的风险。分析了本文工作的难点和挑战。为了研究实现增强隐私所需的计算开销,对该方案进行了实现并与先前发表的技术进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
W-AKA: Privacy-enhanced LTE-AKA using secured channel over Wi-Fi
In this paper, we propose a privacy-enhanced LTE authentication and key agreement scheme, W-AKA. The scheme promises to improve privacy by employing a dynamic identity instead of the static IMSI. In order to exchange the IMSI and inform the user of the new randomized identity, we propose two methods. The first method uses a Wi-Fi secured side channel since Wi-Fi hotspots are becoming ubiquitous. The other method is incorporated as part of the mobile AKA. We also present a simple method through which a random temporary identity is generated. We studied the conditions where W-AKA outperforms the original AKA and where it underperforms. Our analysis shows that in the presence of Wi-Fi, and unless an attacker jams the Wi-Fi channel, W-AKA can sustain both active and passive attacks. On the other hand, in the absence of Wi-Fi, it can only mitigate risks of passive attacks. The difficulties and challenges of the proposed work are also analyzed. The scheme was implemented and compared with previously-published techniques in order to study the computational overhead to accomplish enhanced privacy.
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