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Unbounded anonymous hierarchical IBE with continual-key-leakage tolerance

机译:具有连续密钥泄漏容限的无限匿名分层IBE

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Modern cryptographic schemes are constructed under the fundamental assumption that secret keys are perfectly hidden from all possible attackers. In practice, however, keys and internal states may partially be leaked. Recently, cryptographic construction with key-leakage resilience has been a crucial research topic. In this work, we proposed an anonymous hierarchical identity-based encryption that can tolerate partial leakage of secret keys. Our results were as follows. First, we provided a tolerance for continual key leakage that can capture both memory leakage and continual leakage. We extended a dual-system encryption mechanism in orthogonal subgroups to achieve key-leakage resilience and implicitly employed an update algorithm to guard against continual leakage. Second, the delegation depth is unbounded, which means that no predetermined depth was imposed in the setup algorithm, thus making the scheme very flexible in practice. We employed a secret-sharing approach to split the master key into multiple shares in key components corresponding to the elements. Third, we analyzed and discussed the performance of allowable leakage-tolerance bounds and the leakage rate of the proposed scheme and gave an evaluation that attains about 40-70% leakage rate under the Advanced Encryption Standard 112 security level. Copyright (c) 2013 John Wiley & Sons, Ltd.
机译:现代密码方案是在以下前提下构造的:所有可能的攻击者都完全隐藏了秘密密钥。但是,实际上,键和内部状态可能会部分泄漏。近来,具有密钥泄漏弹性的密码结构已经成为关键的研究课题。在这项工作中,我们提出了一种基于匿名分层身份的加密技术,该加密技术可以容忍部分秘密密钥泄漏。我们的结果如下。首先,我们提供了连续密钥泄漏的容限,可以同时捕获内存泄漏和连续泄漏。我们在正交子组中扩展了双系统加密机制,以实现密钥泄漏恢复能力,并隐式采用了一种更新算法来防止连续泄漏。其次,委托深度不受限制,这意味着在设置算法中未施加预定深度,因此使该方案在实践中非常灵活。我们采用秘密共享的方法将主密钥分成与元素相对应的密钥组件中的多个份额。第三,我们分析和讨论了允许的泄漏容限范围的性能以及所提出方案的泄漏率,并给出了在高级加密标准112安全级别下达到约40-70%泄漏率的评估。版权所有(c)2013 John Wiley&Sons,Ltd.

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