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Efficient revocable hierarchical identity-based encryption using cryptographic accumulators

机译:基于加密累加器的基于高效的Revocable分层标识的加密

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摘要

Hierarchical identity-based encryption is an important extension from IBE and has found many applications in the network world. Private key revocation is a crucial requirement for any public key system. In this paper, we propose a novel revocation method for the hierarchical identity-based encryption. Existing revocable hierarchical identity-based encryption schemes have several disadvantages: the key update size increases logarithmically with the number of users in the system, the public information of key update received by each user is different and always related to the level of the identity hierarchy and the security proof of the revocable scheme is very complex. In our scheme, cryptographic accumulators are used to compress hierarchical levels and revoked users' information into constant values. So we achieve almost constant size of private key update which is irrelevant with the user number in the system. Because of the compression of hierarchical information we can use simple dual system encryption techniques to prove our scheme to be fully secure under several common assumptions without resorting to complex nested dual system encryption techniques.
机译:基于分层的Identity的加密是IBE的重要扩展,并在网络世界中找到了许多应用程序。私钥撤销是对任何公钥系统的关键要求。在本文中,我们提出了一种基于分层标识的加密的新型撤销方法。基于可撤销的分层标识的加密方案具有若干缺点:密钥更新大小随着系统中的用户数而对数增加,每个用户接收的密钥更新的公共信息是不同的,并且始终与身份层次结构的级别相关可撤销方案的安全证明非常复杂。在我们的方案中,加密累加器用于压缩分层级别并将用户的信息撤销成恒定值。因此,我们实现了与系统中的用户号码无关的私钥更新的几乎恒定大小。由于压缩分层信息,我们可以使用简单的双系统加密技术来证明我们的方案在几种常见假设下完全安全,而无需诉诸复杂的嵌套双系统加密技术。

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