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Lightweight Privacy-Preserving Authentication Protocols Secure against Active Attack in an Asymmetric Way

机译:轻量级保留隐私的身份验证协议以非对称方式防止主动攻击

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摘要

As pervasive computing technologies develop fast, the privacy protection becomes a crucial issue and needs to be coped with very carefully. Typically, it is difficult to efficiently identify and manage plenty of the low-cost pervasive devices like Radio Frequency Identification Devices (RFID), without leaking any privacy information. In particular, the attacker may not only eavesdrop the communication in a passive way, but also mount an active attack to ask queries adaptively, which is obviously more dangerous. Towards settling this problem, in this paper, we propose two lightweight authentication protocols which are privacy-preserving against active attack, in an asymmetric way. That asymmetric style with privacy-oriented simplification succeeds to reduce the load of low-cost devices and drastically decrease the computation cost for the management of server. This is because that, unlike the usual management of the identities, our approach does not require any synchronization nor exhaustive search in the database, which enjoys great convenience in case of a large-scale system. The protocols are based on a fast asymmetric encryption with specialized simplification and only one cryptographic hash function, which consequently assigns an easy work to pervasive devices. Besides, our results do not require the strong assumption of the random oracle.
机译:随着普及计算技术的快速发展,隐私保护已成为一个关键问题,需要非常谨慎地应对。通常,在不泄漏任何隐私信息的情况下,很难有效地识别和管理大量低成本的普及型设备,例如射频识别设备(RFID)。特别是,攻击者不仅可能以被动方式窃听通信,还可能发起主动攻击以自适应地询问查询,这显然更加危险。为了解决这个问题,在本文中,我们提出了两种轻量级的身份验证协议,它们以非对称方式保护了针对主动攻击的隐私。这种具有面向隐私的简化方式的不对称样式成功地减轻了低成本设备的负担,并大大降低了服务器管理的计算成本。这是因为,与通常的身份管理不同,我们的方法不需要数据库中的任何同步或详尽搜索,这在大型系统的情况下非常方便。这些协议基于具有特殊简化功能的快速非对称加密,并且只有一个加密哈希函数,因此可以为普及型设备分配轻松的工作。此外,我们的结果不需要随机预言的强力假设。

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