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Revocable attribute-based encryption with decryption key exposure resistance and ciphertext delegation

机译:基于Revocable属性的加密,具有解密密钥曝光电阻和密文委托

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摘要

Attribute-based encryption (ABE) enables fine-grained access control over encrypted data. A practical and popular approach for handing revocation in ABE is to use the indirect revocation mechanism, in which a key generation centre (KGC) periodically broadcasts key update information for all data users over a public channel. Unfortunately, existing RABE schemes are vulnerable to decryption key exposure attack which has been well studied in the identity-based setting. In this paper, we introduce a new notion for RABE called re-randomizable piecewise key generation by allowing a data user to re-randmomize the combined secret key and the key update to obtain the decryption key, and the secret key is unrecoverable even both the decryption key and the key update are known by the attacker. We then propose a new primitive called re-randomizable attribute-based encryption (RRABE) that can achieve both re-randomizable piecewise key generation and cipher text delegation. We also refine the existing security model for RABE to capture decryption key exposure resistance and present a generic construction of RABE from RRABE. Finally, by applying our generic transformation, we give a concrete RABE scheme achieving decryption key exposure resistance and ciphertext delegation simultaneously. (C) 2018 Elsevier Inc. All rights reserved.
机译:基于属性的加密(ABE)可以通过加密数据进行细粒度访问控制。在ABE中撤销撤销的实用和流行方法是使用间接撤销机制,其中密钥生成中心(KGC)周期性地广播所有数据用户通过公共信道广播密钥更新信息。不幸的是,现有的Rabe方案容易受到在基于身份的设置中进行很好地研究的解密密钥曝光攻击。在本文中,我们向Rabe介绍一个名为Re-Acomantizable分段密钥生成的新概念,允许数据用户重新定义组合的秘密密钥和键更新以获得解密密钥,并且甚至可以均可恢复解密密钥和键更新是攻击者已知的。然后,我们提出了一个名为重新随机性属性的加密(Rrabe)的新原始原始,可以实现重新随机化的分段密钥生成和密码文本委派。我们还优化Rabe的现有安全模型,以捕获解密键暴露抗性,并呈现来自Rrabe的Rabe的通用构造。最后,通过应用我们的通用转型,我们给出了一个同时实现了解密密钥曝光阻力和密文委派的具体的Rabe计划。 (c)2018年Elsevier Inc.保留所有权利。

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