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New chosen-ciphertext secure identity-based encryption with tight security reduction to the bilinear Diffie-Hellman problem

机译:新的基于密文的基于安全身份的选择密文加密,对双线性Diffie-Hellman问题的安全性严格降低

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We propose a new identity-based encryption (IBE) system that achieves a tight security reduction to the bilinear Diffie-Hellman (BDH) problem in the random oracle model. Tightness indicates that some level of IBE system security can be straightforwardly based on the hardness of the BDH problem at the same security level. Achieving such tightness requires two strategies: (1) a key generation technique for all identities, and (2) a searching method for the solution to the BDH problem. To implement the first strategy, our system relies on a key generation paradigm recently introduced with the Park-Lee IBE system. To implement the second strategy, we base our system on the strong twin BDH problem that includes access to a decision oracle. We compare the efficiency of our system with that of the previous Nishioka IBE system (based on the Katz-Wang key generation paradigm) combined with another tight variant of the Fujisaki-Okamoto transform. (C) 2015 Elsevier Inc. All rights reserved.
机译:我们提出了一种新的基于身份的加密(IBE)系统,该系统对随机Oracle模型中的双线性Diffie-Hellman(BDH)问题实现了严格的安全性降低。紧密度表明,在相同安全级别下,可以根据BDH问题的严重程度直接确定IBE系统的某个级别的安全性。实现这种紧密性需要两种策略:(1)所有身份的密钥生成技术,以及(2)BDH问题解决方案的搜索方法。为了实施第一个策略,我们的系统依赖于最近在Park-Lee IBE系统中引入的密钥生成范例。为了实施第二种策略,我们基于强大的双BDH问题建立了系统,其中包括访问决策预言。我们将系统的效率与先前的Nishioka IBE系统(基于Katz-Wang密钥生成范例)与Fujisaki-Okamoto变换的另一个紧密变体相结合的效率进行了比较。 (C)2015 Elsevier Inc.保留所有权利。

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