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Revocable IBE Systems with Almost Constant-Size Key Update

机译:具有几乎恒定大小的密钥更新的可撤销IBE系统

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Identity-based encryption (IBE) has been regarded as an attractive alternative to more conventional certificate-based public key systems. It has recently attracted not only considerable research from the academic community, but also interest from the industry and standardization bodies. However, while key revocation is a fundamental requirement to any public key systems, not much work has been done in the identity-based setting. In this paper, we continue the study of revocable IBE (RIBE) initiated by Boldyreva, Goyal, and Kumar. Their proposal of a selective secure RIBE scheme, and a subsequent construction by Libert and Vergnaud in a stronger adaptive security model are based on a binary tree approach, such that their key update size is logarithmic in the number of users. In this paper, we show that the key update size could be further reduced to constant with some small amount of auxiliary information, through a novel combination of the Lewko and Waters IBE scheme and the Camenisch, Kohlweiss, and Soriente pairing-based dynamic accumulator.
机译:基于身份的加密(IBE)被认为是更常规的基于证书的公共密钥系统的一种有吸引力的替代方法。最近,它不仅吸引了学术界的大量研究,而且吸引了业界和标准化机构的关注。但是,尽管密钥撤销是任何公钥系统的基本要求,但在基于身份的设置中并没有做太多的工作。在本文中,我们继续研究由Boldyreva,Goyal和Kumar发起的可撤销IBE(RIBE)。他们提出的选择性安全RIBE方案的建议以及Libert和Vergnaud随后在更强大的自适应安全模型中的构造基于二叉树方法,因此其密钥更新大小与用户数成对数。在本文中,我们表明,通过将Lewko和Waters IBE方案与基于Camenisch,Kohlweiss和Soriente配对的动态累加器进行新颖组合,可以在少量少量辅助信息的情况下将密钥更新大小进一步减小至恒定值。

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